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I-5(8) transition (570nm), and that of F-5(5) --> I-5(8) transition (652 nm) of Ho3+ ion is 1.3 times smaller relatively. The mechanism of upconversion luminescence was discussed. (C) 2003 Elsevier B.V. All rights reserved. [format_doi] => 9e221f8aa4ca057ae1cf7ca9ba0ff7cd-368297122 [author_in] => [Li, J; Wang, JY; Tan, H; Cheng, XF; Song, F; Zhang, HJ; Zhao, SR]Shandong Univ, State Key Lab Crystal Mat, Jinan 250100, Peoples R China.@@@[Li, J; Wang, JY; Tan, H; Cheng, XF; Song, F; Zhang, HJ; Zhao, SR] Nankai Univ, Coll Phys, Photon Ctr, Tianjin, Peoples R China. [cauthor_back] => Li, J [format_title_en_publication_en_pub_year] => 2612f9f54ad0984aab4d923be0ec45d5-2093025024 [classification_No] => 547.2 Rare Earth Metals - 741.1.1 Nonlinear Optics - 802.3 Chemical Operations - 804.2 Inorganic Compounds - 933.1.1 Crystal Lattice - 933.1.2 Crystal Growth [treatment] => Experimental (EXP) [main_eword] => Crystal growth from melt [format_ei_No] => de1ea98652677a1317be0766423e7554-22250355 [from_id] => 76,74,73 [issue] => 3-4 [email] => lijing@icm.sdu.edu.cn [classification_pub] => JCRGA [datebase] => Scopus [numerical_index] => Size 1.97e-06m, Size 5.70e-07m, Size 6.52e-07m, Size 9.76e-07m [sys_jg_type] => 11,10 [format_issn_issue_page_pub_year] => 226a0a0272047b075e9047fb8fac08c8-2054646214 [title_en] => Growth and optical properties of Ho,Yb : YAl3(BO3)(4) crystal [volume] => 256 [author_fn] => Li, J; Wang, JY; Tan, H; Cheng, XF; Song, F; Zhang, HJ; Zhao, SR [pub_year] => 2003 [pub_date] => SEP [begin_page] => 324 [hints] => 2 [publisher] => ELSEVIER SCIENCE BV [doi] => 10.1016/S0022-0248(03)01370-8 [language] => English [source_type] => 351 [reference_No] => 10 [batch] => 3243,3241,3246 [publication_en] => JOURNAL OF CRYSTAL GROWTH [hx_id] => 2376,2378,2371 [sys_update_time] => 2018-09-05 15:28:35 [format_title_en_issn_pub_year] => df0357a94339a40eb9f6c58ee64c1c96-1019322504 [article_id] => 399561,331039,492087 [cauthor_order] => 1 [uncontrolled_terms] => Seed crystals [SYS_TAG] => 3 [end_page] => 327 [page] => 324-327 [hb_type] => 2 [article_dt] => Article [cite_wos] => 28 [check_3Y] => 11 [delivery_No] => 708ND [format_title] => [cauthor_ad] => [Li, J]Shandong Univ, State Key Lab Crystal Mat, Jinan 250100, Peoples R China. [pages] => 4 [publication_29] => J CRYST GROWTH [publication_type] => J [get_data] => 2018-08-29 [keyword_en] => growth from melt; seed crystals; borates; nonlinear optic materials [format_publication_cn] => [keyword_plu] => LASER; LUMINESCENCE [publication_iso] => J. Cryst. Growth [format_title_en] => dce9ce688f3d003f15fcf8d8e4da5458-1342361714 [publisher_city] => AMSTERDAM [cite_awos] => 32 [wos_No] => WOS:000184573400017 [sys_priority_field] => 73 [wos_sub] => Crystallography; Materials Science, Multidisciplinary; Physics, Applied [research_area] => Crystallography; Materials Science; Physics [check_180] => 2 [publisher_ad] => PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS [format_publication_en] => 570e810afa0995457708b9f05ec54e2c-18230889 [jl_language] => english [jl_article_dt] => 期刊论文 [jl_publication_en] => journalofcrystalgrowth [jl_country] => 中国,中国 [jl_keyword_en] => nonlinearopticmaterials,growthfrommelt,borates,seedcrystals [jl_publisher] => elseviersciencebv [author_jg] => [author_id] => 25431,21744,21750,20404 [author_test] => Array ( [0] => Array ( [sure] => 1 [irmagnum] => 0 [u_index] => 6 [name] => 张怀金 [irtag] => 0 [t_index] => 0 [person_id] => 25431 ) [1] => Array ( [sure] => 1 [irmagnum] => 0 [u_index] => 1 [name] => 李静 [irtag] => 0 [t_index] => 1 [person_id] => 21744 ) [2] => Array ( [sure] => 1 [irmagnum] => 0 [u_index] => 4 [name] => 程秀凤 [irtag] => 0 [t_index] => 0 [person_id] => 20404 ) [3] => Array ( [sure] => 0 [irmagnum] => 0 [u_index] => 1 [name] => 李军 [sys_author_id] => Array ( [0] => 25431 [1] => 21744 [2] => 20404 ) [irtag] => 7 [t_index] => 1 [person_id] => 21750 ) ) [company_id] => 24,0,151 [sys_subject_sort] => 0,0 [college_parent_id] => 24,151 [company_test] => Array,Array [sys_author_id_arr] => 20404程秀凤,21744李静,25431张怀金 [jl_publication_cn_publication_en] => journalofcrystalgrowth [jl_keyword_cn_keyword_en] => growthfrommelt,seedcrystals,borates,nonlinearopticmaterials [sys_author_id] => 20404,21744,25431 [format_wos_No] => 2eedbc5b4fb0f968868d8dde4b04fa12-152114452 [index_keyword] => Absorption; Crystal structure; Fluorescence; Holmium; Infrared radiation; Nonlinear optics; Single crystals; Yttrium compounds; Seed crystals; Crystal growth from melt [format_scopus_No] => 342359c9a1c092063fa4effb0205d2a71988318323 [uri] => https://www.scopus.com/inward/record.uri?eid=2-s2.0-0042745541&doi=10.1016%2fS0022-0248%2803%2901370-8&partnerID=40&md5=edfe6ec3b1a1e1199e92d4e3c2bf38ae [standard_in] => Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China; Photonics Center, College of Physics, Nankai University, Tianjin, China [cite_scopus] => 30 [scopus_No] => 2-s2.0-0042745541 [id] => rAd5vWUBFjIhTVEbsFLJ [tags] => 0 ) [13] => Array ( [cauthor] => Du, C.(cldu@icm.sdu.edu.cn) [issn] => 0021-4922 [school_id] => 117 [controlled_terms] => Crystals - Diodes - Neodymium compounds - Optical properties - Q switching - Second harmonic generation [batch2] => 1,2,6 [hb_batch] => 3246 [ei_No] => 2003447701746 [tag] => 0 [author_en] => Du, CL; Qin, LJ; Zhang, HJ; Meng, XL; Xu, GB; Wang, ZP; Xu, XG; Zhu, L; Xu, BC; Wang, JY; Shaw, ZS [sys_level_num] => 1_4 [abstract_en] => We have demonstrated a diode-end-pumped continuous-wave and Q-switched Nd:GdVO4 red laser through intracavity frequency-doubling with a type-II phase-matched KTP crystal. The maximum CW output power at 671 nm was measured to be 505 mW at the incident pump power of 12 W, with the corresponding optical conversion efficiency of 4.2%. When the repetition frequency was 15 kHz, the maximum quasi-CW red output power was obtained to be 781 mW, with the corresponding optical conversion efficiency of 6.5%, the shortest pulse width of 65 ns, the highest pulse energy of 52 muJ and the highest peak power of 801 W. [format_doi] => d7d3c4710d22992483e319d069ce22841527042888 [author_in] => [Du, C] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Qin, L] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Zhang, H] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Meng, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Xu, G] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Wang, Z] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Xu, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Zhu, L] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Xu, B] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Wang, J] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Shao, Z] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China [cauthor_back] => Du, C [format_title_en_publication_en_pub_year] => b78924356681e6fa6fdf73b8b0332f50 [classification_No] => 741.1 Light/Optics - 744.1 Lasers, General - 804.2 Inorganic Compounds - 933.1 Crystalline Solids [treatment] => Theoretical (THR); Experimental (EXP) [main_eword] => Continuous wave lasers [format_ei_No] => 6d67cf2a3f1857a7e5e30664cf15cc5d [from_id] => 76,80,74,73 [issue] => 8 [email] => cldu@icm.sdu.edu.cn [classification_pub] => JAPND [datebase] => Scopus [numerical_index] => Energy 5.20e-05J, Frequency 1.50e+04Hz, Percentage 4.20e+00%, Percentage 6.50e+00%, Power 1.20e+01W, Power 5.05e-01W, Power 7.81e-01W, Power 8.01e+02W, Size 6.71e-07m, Time 6.50e-08s [sys_jg_type] => 11,10,5 [format_issn_issue_page_pub_year] => d320c153ddad693f420b5c455cf2c42f [title_en] => Diode-end-pumped continuous-wave and Q-switched Nd : GdVO4/KTP laser at 671 nm [volume] => 42 [author_fn] => Du, CL; Qin, LJ; Zhang, HJ; Meng, XL; Xu, GB; Wang, ZP; Xu, XG; Zhu, L; Xu, BC; Wang, JY; Shaw, ZS [pub_year] => 2003 [pub_date] => AUG [begin_page] => 5063 [hints] => 1 [publisher] => INST PURE APPLIED PHYSICS [doi] => 10.1143/JJAP.42.5063 [language] => English [source_type] => 351 [reference_No] => 19 [batch] => 3243,3241,3252,3246 [publication_en] => JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS [hx_id] => 2376,2378,2371 [sys_update_time] => 2018-09-05 15:28:35 [format_title_en_issn_pub_year] => f1f9afba80dd6f4c2f3679d76c11f6cc [article_id] => 331126,227454,399541,492223 [cauthor_order] => 1 [uncontrolled_terms] => Pulse energy [SYS_TAG] => 3 [end_page] => 5065 [page] => 5063-5065 [hb_type] => 2 [article_dt] => Article [cite_wos] => 2 [check_3Y] => 3 [delivery_No] => 723FY [format_title] => 5c880c69d6395f2e956da73662dfc956695117283 [cauthor_ad] => [Du, CL]Shandong Univ, State Key Lab Crystal Mat, Jinan 250100, Peoples R China. [pages] => 3 [publication_29] => JPN J APPL PHYS 1 [researcherID] => Xu, Guibao/F-3461-2010 [publication_type] => J [get_data] => 2018-08-29 [keyword_en] => Nd : GdVO4; KTP; 671 nm; diode-end-pumped; Q-switched [format_publication_cn] => 8cbbfe4349637f9e5335f020ad19f428-281784740 [keyword_plu] => 1.06 MU-M; ND-YVO4 LASER; ARRAY; PERFORMANCE; GENERATION; CRYSTAL; LIGHT; MW; ND [publication_iso] => Jpn. J. Appl. Phys. Part 1 - Regul. Pap. Short Notes Rev. Pap. [format_title_en] => 5c880c69d6395f2e956da73662dfc956695117283 [publisher_city] => TOKYO [cite_awos] => 2 [wos_No] => WOS:000185422900034 [sys_priority_field] => 76 [wos_sub] => Physics, Applied [research_area] => Physics [check_180] => 0 [publisher_ad] => TOYOKAIJI BLDG NO. 12, 6-9-6 SHINBASHI, MINATO-KU, TOKYO, 105, JAPAN [format_publication_en] => 4f9f7d41da09a463e531250bbd72be511926166876 [jl_language] => english [jl_article_dt] => 期刊论文 [jl_publication_en] => japanesejournalofappliedphysicspart1regularpapersshortnotesandreviewpapers [jl_country] => 中国,纳米比亚,瑞士,印度 [jl_keyword_en] => 671nm,qswitched,ktp,ndgdvo4,diodeendpumped [jl_publisher] => instpureappliedphysics [author_jg] => [keyword_cn] => Nd : GdVO4;KTP;671 nm;diode-end-pumped;Q-switched;1.06 MU-M;ND-YVO4 LASER;ARRAY;PERFORMANCE;GENERATION;CRYSTAL;LIGHT;MW;ND [clc] => O59 [title_cn] => Diode-end-pumped continuous-wave and Q-switched Nd : GdVO4/KTP laser at 671 nm [publication_cn] => Japanese journal of applied physics [abstract_cn] => We have demonstrated a diode-end-pumped continuous-wave and Q-switched Nd:GdVO4 red laser through intracavity frequency-doubling with a type-II phase-matched KTP crystal. The maximum CW output power at 671 nm was measured to be 505 mW at the incident pump power of 12 W, with the corresponding optical conversion efficiency of 4.2%. When the repetition frequency was 15 kHz, the maximum quasi-CW red output power was obtained to be 781 mW, with the corresponding optical conversion efficiency of 6.5%, the shortest pulse width of 65 ns, the highest pulse energy of 52 muJ and the highest peak power of 801 W. 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Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China [cite_scopus] => 3 [scopus_No] => 2-s2.0-18844482762 [format_title_cn_publication_cn_pub_year] => e36c1d9ef8f58df667974118c0ac0a63 [format_title_cn_issn_pub_year] => f1f9afba80dd6f4c2f3679d76c11f6cc [jl_author_test] => usureu0,usureu1,unameuu738bu519b,upersonid23997,unameuu5f20u6000u91d1,unameuu5f90u971e,unameuu5f20u60e0,upersonid22894,upersonid24404,upersonid23984,upersonid23992,unameuu738bu9759,upersonid26182,upersonid24426,upersonid24429,upersonid24782,unameuu738bu6770,upersonid24784,u24429,upersonid25431,upersonid23974,upersonid23972,upersonid23999,upersonid23970,upersonid23971,upersonid25413,upersonid23994,upersonid24847,upersonid25416,upersonid23978,upersonid23979,uuindex10,u25431,usysauthoridu24784,u24847,upersonid25434,unameuu5f20u5b8f,upersonid25435,unameuu738bu6c5f,unameuu738bu5fd7u840d,unameuu5f90u6b23,upersonid23991,uuindex8,unameuu5b5fu6653,upersonid24418,unameuu5f20u8f89,unameuu738bu4eacu76c8,uuindex3,unameuu8bb8u5fc3u5149,uuindex6,uuindex7,uuindex4,utindex0,uirtag7,upersonid24436,unameuu738bu8d1e,uirtag0,unameuu5f90u73b0u521a,upersonid23998,uirtag8,unameuu738bu6676,upersonid24797,unameuu6731u78ca,unameuu738bu91d1u5ca9,upersonid23981,upersonid23980,upersonid24850,upersonid23985,unameuu5f20u7ea2u9759,unameuu738bu5a1f,unameuu738bu6b63u5e73,unameuu738bu6e5b,unameuu738bu9707,unameuu738bu8fdb,unameuu8bb8u9192,unameuu738bu5065 [jl_company_test] => uircu0,uorgidu24,uparentidu24,unameuu6676u4f53u6750u6599u7814u7a76u6240,ulevelu1 [sys_author_in_last_arr] => china [sys_author_id] => [jl_pub_year] => 2003 [id] => mAd5vWUBFjIhTVEbsFLJ [tags] => 0 ) [14] => Array ( [cauthor] => Yang, G.(gsyang@sdu.edu.cn) [issn] => 0039-9140 [school_id] => 117 [controlled_terms] => Carbon - Cellulose - Computer software - High performance liquid chromatography - Isomers - Regression analysis - Stereochemistry [batch2] => 1,2,6 [hb_batch] => 3246 [ei_No] => 2003367626392 [tag] => 0 [author_en] => Du, W; Yang, GS; Wang, XQ; Yuan, SL; Zhou, L; Xu, D; Liu, CP [abstract_en] => A series of 15 organic phosphonate esters enatiomers containing a carbon atom as a chiral center have been separated on the cellulose tris(3,5-dimethylphenyl carbamate) chiral stationary phase (CSP) in the normal phase by high performance liquid chromatography (HPLC). Both the capacity factor (k) and separation factor (alpha) of all solutes are presented. The influence of the substitutional group on the benzene ring attached to the chiral carbon atom and the steric hindrance of alkoxyl of the phosphonate ester on the chiral separation are discussed. Based on a and different structure parameters, good agreement between the predicted values and the experimental ones is obtained. The most characteristic parameter influencing the chromatographic separation is chosen from many structure parameters by linear regression method of QSAR software. The probable mechanism of the chiral recognition is proposed. (C) 2003 Elsevier B.V. All rights reserved. [format_doi] => 64046a879d55deac66ba7cd4134e29cc-903466762 [author_in] => [Du, W] Sch. of Chem./Chemical Engineering, Shandong University, Jinan 250100, China, Stt. Key Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Yang, G] Sch. of Chem./Chemical Engineering, Shandong University, Jinan 250100, China@@@[ Wang, X] Stt. Key Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Yuan, S] Sch. of Chem./Chemical Engineering, Shandong University, Jinan 250100, China@@@[ Zhou, L] Sch. of Chem./Chemical Engineering, Shandong University, Jinan 250100, China, Institute of Veterinary Drug Control, Shandong Province, Jinan 250022, China@@@[ Xu, D] Stt. Key Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Liu, C] Sch. of Chem./Chemical Engineering, Shandong University, Jinan 250100, China [cauthor_back] => Yang, G [format_title_en_publication_en_pub_year] => 2c6d35cc9c6458837682c613fdbb3a02-353626395 [classification_No] => 723 Computer Software, Data Handling and Applications - 801 Chemistry - 802.3 Chemical Operations - 804.1 Organic Compounds - 815.1.1 Organic Polymers - 922.2 Mathematical Statistics [treatment] => Theoretical (THR); Experimental (EXP) [main_eword] => Esters [format_ei_No] => bea752b4b37bc4fe5a7f30203a550766-756004820 [from_id] => 76,80,74,73 [issue] => 6 [email] => duwei@icm.sdu.edu.cn; gsyang@sdu.edu.cn [classification_pub] => TLNTA [datebase] => Scopus [sys_level_num] => 1_4 [sys_jg_type] => 11,10,3,5 [format_issn_issue_page_pub_year] => 4b6b4addbe3d9171ab696a6cbfe959cd1942349974 [title_en] => Enantioseparation of 15 organic phosphonate esters on the cellulose tris(3,5-dimethylphenyl carbamate) chiral stationary phase by HPLC [volume] => 60 [author_fn] => Du, W; Yang, GS; Wang, XQ; Yuan, SL; Zhou, L; Xu, D; Liu, CP [pub_year] => 2003 [pub_date] => AUG 29 [begin_page] => 1187 [hints] => 1 [publisher] => ELSEVIER SCIENCE BV [doi] => 10.1016/S0039-9140(03)00231-5 [language] => English [source_type] => 351 [reference_No] => 18 [batch] => 3243,3241,3252,3246 [publication_en] => TALANTA [hx_id] => 2376,2378,2371 [sys_update_time] => 2018-09-05 15:28:35 [format_title_en_issn_pub_year] => afa6ad1fa735c706f8a9ae0bc8ab3ddd1492071895 [article_id] => 492258,331064,162435,398633 [cauthor_order] => 2 [uncontrolled_terms] => Enantioseparation [SYS_TAG] => 3 [end_page] => 1195 [page] => 1187-1195 [hb_type] => 2 [article_dt] => Article [cite_wos] => 16 [check_3Y] => 3 [delivery_No] => 716RB [format_title] => 8034be4830abc1e40aee5666681429f11358149141 [cauthor_ad] => [Yang, GS]Shandong Univ, Sch Chem & Chem Engn, Jinan 250100, Peoples R China. [pages] => 9 [publication_29] => TALANTA [eissn] => 1873-3573 [pubmedID] => 18969145 [publication_type] => J [get_data] => 2018-08-29 [keyword_en] => enantioseparation; organic phosphonate esters; chiral OD; QSAR [format_publication_cn] => 0f3b30fbd7880069c74ca30144a11a211858748499 [keyword_plu] => PERFORMANCE LIQUID-CHROMATOGRAPHY; ENANTIOMERIC SEPARATION; OD [publication_iso] => Talanta [format_title_en] => 8034be4830abc1e40aee5666681429f11358149141 [publisher_city] => AMSTERDAM [cite_awos] => 23 [wos_No] => WOS:000185041200012 [sys_priority_field] => 76 [wos_sub] => Chemistry, Analytical [research_area] => Chemistry [check_180] => 0 [publisher_ad] => PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS [format_publication_en] => 0d90997effb696b86720568e2d630c69-1441466747 [jl_language] => english [jl_article_dt] => 期刊论文 [jl_publication_en] => talanta [jl_country] => 中国 [jl_keyword_en] => chiralod,enantioseparation,organicphosphonateesters,qsar [jl_publisher] => elseviersciencebv [author_jg] => [keyword_cn] => enantioseparation;organic phosphonate esters;chiral OD;QSAR [clc] => O65 [title_cn] => Enantioseparation of 15 organic phosphonate esters on the cellulose tris(3,5-dimethylphenyl carbamate) chiral stationary phase by HPLC [publication_cn] => Talanta: The International Journal of Pure and Applied Analytical Chemistry [abstract_cn] => A series of 15 organic phosphonate esters enatiomers containing a carbon atom as a chiral center have been separated on the cellulose tris(3,5-dimethylphenyl carbamate) chiral stationary phase (CSP) in the normal phase by high performance liquid chromatography (HPLC). Both the capacity factor (k) and separation factor (α) of all solutes are presented. The influence of the substitutional group on the benzene ring attached to the chiral carbon atom and the stearic hindrance of alkoxyl of the phosponate ester on the chiral separation are discussed. Based on α and different structure parameters, good agreement between the predicted values and the experimental ones is obtained. The most characteristic parameters influencing the chromatographic separation is chosen from many structure parameters by linear regression method of QSAR software. The probable mechanism of the chiral recognition is proposed. [author_cn] => Wei Du;Guosheng Yang;Xinqiang Wang;Shiling Yuan;Lan Zhou;Dong Xu;Chengpu Liu [jl_publication_cn] => talantatheinternationaljournalofpureandappliedanalyticalchemistry [jl_keyword_cn] => chiralod,enantioseparation,organicphosphonateesters,qsar [jl_clc] => o65 [company_id] => 24,0,151,43,169 [sys_subject_sort] => 0,0,0,0 [college_parent_id] => 24,151,43,169 [company_test] => Array,Array,Array,Array [author_id] => 24824,24932,26104,22182,26100,26101,26102,26103 [author_test] => Array ( [0] => Array ( [sure] => 0 [irmagnum] => 0 [u_index] => 0 [name] => 刘昌 [irtag] => 7 [t_index] => 0 [person_id] => 22182 ) [1] => Array ( [sure] => 1 [irmagnum] => 0 [u_index] => 6 [name] => 许东 [irtag] => 0 [t_index] => 0 [person_id] => 24824 ) [2] => Array ( [sure] => 0 [irmagnum] => 0 [u_index] => 0 [name] => 杨光 [irtag] => 7 [t_index] => 0 [person_id] => 24932 ) [3] => Array ( [sure] => 0 [irmagnum] => 0 [u_index] => 5 [name] => 周琳 [irtag] => 7 [t_index] => 0 [person_id] => 26104 ) [4] => Array ( [sure] => 0 [irmagnum] => 0 [u_index] => 5 [name] => 周莉 [irtag] => 7 [t_index] => 0 [person_id] => 26102 ) [5] => Array ( [sure] => 0 [irmagnum] => 0 [u_index] => 5 [name] => 周琳 [irtag] => 7 [t_index] => 0 [person_id] => 26103 ) [6] => Array ( [sure] => 0 [irmagnum] => 0 [u_index] => 5 [name] => 周丽 [irtag] => 7 [t_index] => 0 [person_id] => 26100 ) [7] => Array ( [sure] => 0 [irmagnum] => 0 [u_index] => 5 [name] => 周莉 [sys_author_id] => Array ( [0] => 24824 ) [irtag] => 7 [t_index] => 0 [person_id] => 26101 ) ) [sys_author_id_arr] => 24935杨国生,25263苑世领,24824许东,24297王新强 [jl_publication_cn_publication_en] => talanta,talantatheinternationaljournalofpureandappliedanalyticalchemistry [jl_keyword_cn_keyword_en] => qsar,enantioseparation,chiralod,organicphosphonateesters [index_keyword] => Carbon; Cellulose; Computer software; High performance liquid chromatography; Isomers; Regression analysis; Stereochemistry; Enantioseparation; Esters; benzene; carbamic acid derivative; carbon; cellulose derivative; cellulose tris(3,5 dimethylphenyl carbamate); phosphonic acid ester; unclassified drug; article; calculation; chemical structure; chiral chromatography; chirality; computer program; concentration response; enantiomer; high performance liquid chromatography; linear regression analysis; molecular recognition; parameter; quantitative structure activity relation; separation technique; solute; stereospecificity; structure analysis [format_scopus_No] => a00f4c873afc4062cde9f7534e2adc011801930314 [format_wos_No] => e2b95a8dee67ad2e4eaa459c29282b73-325532219 [uri] => https://www.scopus.com/inward/record.uri?eid=2-s2.0-0042926895&doi=10.1016%2fS0039-9140%2803%2900231-5&partnerID=40&md5=50f25012f10e3193eca55c11a42e1710 [standard_in] => Sch. of Chem./Chemical Engineering, Shandong University, Jinan 250100, China; Stt. Key Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China; Institute of Veterinary Drug Control, Shandong Province, Jinan 250022, China [producer] => Shimadzu, Japan; Accelrys, United States [cite_scopus] => 16 [substance] => benzene, 71-43-2; carbon, 7440-44-0 [scopus_No] => 2-s2.0-0042926895 [format_title_cn_publication_cn_pub_year] => 5fd12211ab2e3d414c863a90480e8857-1539652521 [format_title_cn_issn_pub_year] => afa6ad1fa735c706f8a9ae0bc8ab3ddd1492071895 [jl_author_test] => usureu0,unameuu738bu65b0u5f3a,uirauthortype0,uirauthortype2,unameuu6768u56fdu751f,uirtstag0,unameuu82d1u4e16u9886,upersonid26102,upersonid24824,upersonid24297,uuindex2,uuindex3,uuindex6,utindex1,utindex0,uirtag7,uirinspecttag0,uuindex4,uirtag0,uuindex5,uirtypical1,upersonid25263,unameuu5468u8389,upersonid24935,unameuu8bb8u4e1c [jl_company_test] => uircu0,unameuu5316u5b66u4e0eu5316u5de5u5b66u9662,uparentidu43,uorgidu43,ulevelu1 [sys_author_in_last_arr] => china [sys_author_id] => [id] => DAd5vWUBFjIhTVEbq0_t [tags] => 0 ) [15] => Array ( [issn] => 0218-348X [delivery_No] => 732RX [batch2] => 1,2,6 [hb_batch] => 3241 [tag] => 0 [author_en] => Zhao, SR; Tan, J; Wang, JY; Xu, XH; Liu, H [abstract_en] => In this paper, we introduce a dendritic crystal, formed in matt glaze of LiAlSiO4-SiO2, having \"Sierpinski gasket\" fractal morphology. The crystal structure of this \"Sierpinski gasket\" dendrite is beta-quartz. beta-quartz can grow two kinds of fractal patterns: snow-shaped dendrite and \"Sierpinski gasket\" dendrite, depending on different supercooling conditions. These two kinds of fractals can develop together in one dendritic crystal. The evolution of the boundary morphologies between these two kinds of fractal dendrites can be described by another fractal - Koch curve. The \"Sierpinski gasket\" dendrite is a rather new fractal growth pattern which can introduce new opportunities to fractal. growth research of nonlinear sciences. [publication_type] => J [format_doi] => 61d3166c651150f4ab568781654d56eb-685868904 [author_in] => [Zhao, S] China University of Geosciences, Wuhan 430074, China, Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Tan, J] China University of Geosciences, Wuhan 430074, China@@@[ Wang, J] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Xu, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Liu, H] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China [publisher_city] => SINGAPORE [cauthor_back] => Zhao, SR [get_data] => 2018-08-29 [format_title_en_publication_en_pub_year] => f0f9a72905ae5aa6a1bbfd50bf3aaf3e1226733231 [begin_page] => 271 [cite_wos] => 1 [check_3Y] => 6 [keyword_plu] => GROWTH [cite_awos] => 3 [from_id] => 76,80,73 [cauthor_ad] => [Zhao, SR]China Univ Geosci, Wuhan 430074, Peoples R China. [school_id] => 117 [cauthor_order] => 1 [research_area] => Mathematics; Science & Technology - Other Topics [sys_level_num] => 1_7 [publisher] => WORLD SCIENTIFIC PUBL CO PTE LTD [sys_jg_type] => 11,10,3,5 [format_issn_issue_page_pub_year] => 128a24880e9cef4101b3f9c57935a3c72109256970 [title_en] => A dendrite with \"Sierpinski gasket\" fractal morphology in matt glaze of LiAlSiO4-SiO2 system [publication_29] => FRACTALS [author_fn] => Zhao, SR; Tan, J; Wang, JY; Xu, XH; Liu, H [pub_year] => 2003 [publisher_ad] => JOURNAL DEPT PO BOX 128 FARRER ROAD, SINGAPORE 912805, SINGAPORE [check_180] => 0 [keyword_en] => dendrite; \"Sierpinski gasket\" fractal; LiAlSiO4-SiO2; beta-quartz [end_page] => 276 [pub_date] => SEP [pages] => 6 [format_wos_No] => c029ab3028aedebd40d05a75d8094fd41900239274 [hints] => 1 [volume] => 11 [doi] => 10.1142/S0218348X03001525 [language] => English [source_type] => 351 [issue] => 3 [reference_No] => 7 [batch] => 3243,3241,3252 [publication_en] => FRACTALS-COMPLEX GEOMETRY PATTERNS AND SCALING IN NATURE AND SOCIETY [hx_id] => 2378,2371 [sys_update_time] => 2018-09-05 15:29:28 [format_title_en_issn_pub_year] => 2809e000b601ff3628192ace27693746-1971966219 [publication_iso] => Fractals-Complex Geom. Patterns Scaling Nat. Soc. 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The crystal structure of this \\\"Sierpinski gasket\\\" dendrite is β-quartz. β-quartz can grow two kinds of fractal patterns: snow-shaped dendrite and \\\"Sierpinski gasket\\\" dendrite, depending on different supercooling conditions. These two kinds of fractals can develop together in one dendritic crystal. The evolution of the boundary morphologies between these two kinds of fractal dendrites can be described by another fractal - Koch curve. The \\\"Sierpinski gasket\\\" dendrite is a rather new fractal growth pattern which can introduce new opportunities to fractal growth research of nonlinear sciences. 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=> 0 [u_index] => 0 [name] => 徐欣 [irtag] => 7 [t_index] => 0 [person_id] => 24797 ) [44] => Array ( [sure] => 0 [irmagnum] => 0 [u_index] => 0 [name] => 赵珊 [irtag] => 7 [t_index] => 0 [person_id] => 25918 ) [45] => Array ( [sure] => 0 [irmagnum] => 0 [u_index] => 0 [name] => 徐翔 [sys_author_id] => Array ( [0] => 22257 ) [irtag] => 7 [t_index] => 0 [person_id] => 26310 ) ) [sys_author_id_arr] => 22257刘宏 [jl_publication_cn_publication_en] => fractalscomplexgeometrypatternsandscalinginnatureandsociety,fractalsaninterdisciplinaryjournalonthecomplexgeometryofnature [jl_keyword_cn_keyword_en] => βquartz,dendrite,sierpinskigasketfractal,lialsio4sio2,betaquartz [index_keyword] => Sio [cauthor] => Zhao, S(jin.tan@kcl.ac.uk) [datebase] => Scopus [format_scopus_No] => 4e25f39552797b36651dd799eb7c3235538987762 [cite_scopus] => 2 [uri] => https://www.scopus.com/inward/record.uri?eid=2-s2.0-0242424298&doi=10.1142%2fS0218348X03001525&partnerID=40&md5=89984bed45b76a63d3f6452a8fb8faec [standard_in] => China University of Geosciences, Wuhan 430074, China; Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China [scopus_No] => 2-s2.0-0242424298 [format_title_cn_publication_cn_pub_year] => 79dc624c3206955f8c73bb768360bee4802795408 [format_title_cn_issn_pub_year] => 2809e000b601ff3628192ace27693746-1971966219 [jl_author_test] => usureu0,unameuu5218u7ea2,unameuu5f90u5411u534e,uirauthortype0,upersonid22249,uirtstag0,upersonid24846,upersonid23978,upersonid24786,uuindex3,unameuu738bu4eacu76c8,unameuu8bb8u6548u7ea2,uuindex4,uuindex5,uirtag7,uirinspecttag0,uirtag0,utindex0,upersonid22256,upersonid22257,uirtypical1,unameuu738bu91d1u5ca9,upersonid23981,unameuu5218u5b8f [sys_author_in_last_arr] => china [sys_author_id] => 22257 [id] => wgifvWUBFjIhTVEbeuSI [tags] => 0 ) [16] => Array ( [cauthor] => Ying, M.(minjuying@163.com) [issn] => 0167-577X [school_id] => 117 [controlled_terms] => Amorphous films - Annealing - Electron energy levels - Photoluminescence - Rapid thermal annealing - Semiconducting aluminum compounds - Semiconducting gallium arsenide [batch2] => 1,6 [hb_batch] => 3246 [ei_No] => 2003247501414 [tag] => 0 [author_en] => Ying, MJ; Xia, YY; Liu, PJ; Liu, XD; Zhao, MW; Wang, Z [abstract_en] => The energy levels in AlGaAs/GaAs multiple quantum well (MQW) were calculated with transfer matrix method (TMM) and compared with experimental results from photoluminescence (PL) measurements. The comparison shows good agreement. A thin layer of sputtered SiO2 film was deposited on AlGaAs/GaAs MQW samples and a subsequent rapid thermal annealing (RTA) was carried out. Photoluminescence (PL) measurements showed that the PL characteristics of the wells at different depths beneath the surface of the AlGaAs/GaAs MQW behave differently with the change of RTA condition. The PL intensities of the wells close to the surface and the bottom of the AlGaAs/GaAs MQW are sensitive to the RTA condition, while those of the wells in the middle of the MQW show little variations with the change of RTA condition. (C) 2002 Elsevier Science B.V All rights reserved. [format_doi] => 2ab61a25dda2ab43173fb284823f92d8-2133695601 [author_in] => [Ying, MJ; Xia, YY; Liu, PJ; Liu, XD; Zhao, MW; Wang, Z]Shandong Univ, Dept Optoelect, Jinan 250100, Peoples R China.@@@[Ying, MJ; Xia, YY; Liu, PJ; Liu, XD; Zhao, MW; Wang, Z] Shandong Univ, Dept Phys, Jinan 250100, Peoples R China.@@@[Ying, MJ; Xia, YY; Liu, PJ; Liu, XD; Zhao, MW; Wang, Z] Shanghai Jiao Tong Univ, Res Inst MicroNanometer Sci & Technol, Shanghai 200030, Peoples R China.@@@[Ying, MJ; Xia, YY; Liu, PJ; Liu, XD; Zhao, MW; Wang, Z] Shandong Univ, Inst Crystal Mat, Jinan 250100, Peoples R China. [cauthor_back] => Ying, M [format_title_en_publication_en_pub_year] => 063d6f2c27dc0983eef9856f0cf704af-1119188843 [classification_No] => 537.1 Heat Treatment Processes - 712.1.2 Compound Semiconducting Materials - 714.2 Semiconductor Devices and Integrated Circuits - 741.1 Light/Optics - 931.3 Atomic and Molecular Physics - 933.2 Amorphous Solids [treatment] => Theoretical (THR) [main_eword] => Semiconductor quantum wells [format_ei_No] => 5959da576b7a46ff0cea681b3cfa3278-1025999907 [from_id] => 76,74,73 [issue] => 19 [email] => minjuying@163.com [classification_pub] => MLETD [datebase] => Scopus [sys_level_num] => 1_4 [sys_jg_type] => 11 [format_issn_issue_page_pub_year] => 2c585b96d26a0d95bdc0b9e0b6dfd3ec301842075 [title_en] => Influence of annealing condition on photoluminescence characteristics of AlGaAs/GaAs multiple quantum well [volume] => 57 [author_fn] => Ying, MJ; Xia, YY; Liu, PJ; Liu, XD; Zhao, MW; Wang, Z [pub_year] => 2003 [pub_date] => JUN [begin_page] => 2932 [hints] => 1 [publisher] => ELSEVIER SCIENCE BV [doi] => 10.1016/S0167-577X(02)01399-X [language] => English [source_type] => 351 [reference_No] => 9 [batch] => 3243,3241,3246 [publication_en] => MATERIALS LETTERS [hx_id] => 2376,2378,2371 [sys_update_time] => 2018-09-05 15:28:35 [format_title_en_issn_pub_year] => 004b0f57f9f789ec9d783f99bc9c5468-427121376 [article_id] => 331244,398743,492420 [cauthor_order] => 1 [uncontrolled_terms] => High-frequency sputter [SYS_TAG] => 3 [end_page] => 2935 [page] => 2932-2935 [hb_type] => 2 [article_dt] => Article [cite_wos] => 2 [check_3Y] => 2 [delivery_No] => 685MU [format_title] => [cauthor_ad] => [Ying, MJ]Shandong Univ, Dept Optoelect, Jinan 250100, Peoples R China. [pages] => 4 [publication_29] => MATER LETT [researcherID] => Zhao, Mingwen/A-8282-2014 [orcID] => Zhao, Mingwen/0000-0002-7583-9682 [publication_type] => J [get_data] => 2018-08-29 [keyword_en] => AlGaAs/GaAs MQW; rapid thermal annealing; photoluminescence [format_publication_cn] => [keyword_plu] => ELECTRIC-FIELD [publication_iso] => Mater. Lett. 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Inst. Micro/Nanometer Sci./T., Shanghai Jiao Tong University, Shanghai 200030, China; Institute of Crystal Materials, Shandong University, Jinan, Shandong 250100, China [cite_scopus] => 8 [scopus_No] => 2-s2.0-0037562905 [jl_author_test] => uuindex5,upersonid23776,unameuu738bu6021,upersonid23930,unameuu8d75u660eu6587,unameuu738bu73ae,unameuu738bu946b,upersonid23762,upersonid24298,upersonid24066,unameuu738bu8d1e,upersonid24218,unameuu738bu745c,upersonid23845,unameuu738bu6656,unameuu738bu7426,unameuu738bu6f47,upersonid22468,unameuu738bu94ce,upersonid24280,upersonid22467,upersonid24059,upersonid22464,upersonid24115,upersonid23910,uirauthortype0,upersonid24204,upersonid24119,upersonid26285,upersonid24203,unameuu738bu7fce,unameuu6c6au5b99,upersonid24328,upersonid24329,unameuu5218u65edu4e1c,upersonid24327,upersonid24120,upersonid24121,upersonid24122,upersonid24123,unameuu738bu9707,upersonid24125,upersonid24126,upersonid23909,unameuu738bu65cc,upersonid23983,upersonid24124,upersonid22484,usureu0,upersonid24425,upersonid24424,upersonid24426,upersonid25899,uirtstag0,unameuu738bu7490,unameuu5218u5411u4e1c,unameuu4e07u6842u6021,unameuu5218u6653u591a,upersonid24418,unameuu738bu831c,uuindex6,uuindex4,upersonid24352,uirinspecttag0,unameuu738bu54f2,upersonid24381,unameuu738bu8559,unameuu738bu6615,unameuu738bu749e,unameuu738bu598d,upersonid24153,upersonid24404,upersonid24246,unameuu5218u6653u4e1c,unameuu738bu6e5b,unameuu738bu7693,uirtag6,unameuu738bu8587,utindex0,unameuu738bu704f,upersonid24415,upersonid23940,uirtypical3,unameuu738bu777f,unameuu738bu5029,unameuu738bu660a [jl_company_test] => uircu0,uorgidu24,uparentidu24,unameuu6676u4f53u6750u6599u7814u7a76u6240,ulevelu1 [sys_author_in_last_arr] => peoplesrchina [sys_author_id] => [id] => egd5vWUBFjIhTVEbq0_t [tags] => 0 ) [17] => Array ( [issn] => 1671-7694 [reference] => Feinberg, J., (1982) Opt. Lett., 7, p. 486; Yeh, P., Chang, T.Y., Ewbank, M.D., (1988) J. Opt. Am. B, 5, p. 1743; Weiss, S., Sternklar, S., Fischer, B., (1987) Opt. Lett., 12, p. 114; Feinberg, J., MacDonald, K.R., (1989) Topics in Applied Physics, Photorefractive Materials and Their Applications, 62, p. 151. , Guenter II P. and Huignard J.-P.(ed.), Springer-Verlag, Berlin, Heidelberg, New York; Caulfield, H.J., Shamir, J., He, Q., (1986) Appl. Opt., 26, p. 2291; Weiss, S., Sternklar, S., Fischer, B., (1987) Opt. Eng., 26, p. 423; Fischer, B., Weiss, S., Sternklar, S., (1987) Appl. Phys. Lett., 50, p. 483; Sharp, E.J., Clark III, W.W., Vuong, Q., Miller, M.J., Wood, G.L., Monson, B., Salamo, G.J., Neurgaonkar, R.R., (1993) Opt. Lett., 18, p. 986; Shimura, T., Tamura, M., Kuroda, K., (1993) Opt. Lett., 18, p. 1645; Wright, M.W., Mcinerney, J.G., (1994) Opt. Commun., 110, p. 689; MacDonald, K.R., Feinberg, J., (1983) J. Opt. Soc. Am., 73, p. 548; Mu, X., Shao, Z., Zhang, J., Zhang, L., Jiang, M., Luo, H., Zhong, W., (1995) Appl. Phys. Lett., 67, p. 2275; Mullen, R.A., Vickers, D.J., West, L., Pepper, D.M., (1992) J. Opt. Soc. Am. B, 9, p. 1726; Wang, D., Zhang, Z., Zhu, Y., Zhang, S., Ye, P., (1989) Opt. Lett., 58, p. 495; Ewbank, M.D., (1988) Opt. Lett., 13, p. 47; Smout, A.M., Eason, R.W., (1987) Opt. Lett., 12, p. 498; Zhang, L., Zhang, J., Shao, Z., Mu, X., Chen, H., Jiang, M., (1995) Opt. Lett., 20, p. 1456; Zhang, L., Zhang, J., Shao, Z., Mu, X., Chen, H., Jiang, M., (1996) Appl. Phys. Lett., 68, p. 1311; Xu, X., Shao, Z., Mu, X., Du, C., Wang, Z., Xu, H., Luo, H., (2001) Appl. Phys. Lett., 78, p. 569; Wang, J., Guan, Q., Liu, Y., Wei, J., Wang, D., Lian, Y., Yang, H., Ye, P., (1992) Appl. Phys. Lett., 61, p. 2761; Tomita, Y., Matsushima, S., (1999) J. Opt. Soc. Am. B, 16, p. 111; Yue, X., Lu, X., Song, Y., Shao, Z., Sun, D., Jiang, Q., Chen, H., (1991) Appl. Phys. B, 53, p. 319 [batch2] => 1,2,6 [format_cscd_No] => 1b92109c0465e0c3d6e6b45256fbd9651514407558 [tag] => 0 [research_area] => Optics; Physics [publication_info] => 1671-7694(2003)1:8<482:POCMPP>2.0.TX;2-F [publication_type] => J [keyword_cn] => 二波混频; KNSBN晶体; 自泵浦相耦合; 泵浦光; 激光技术 [format_title_en_publication_en_pub_year] => 9120892ca9bb8c195364a046660b6dfa1021690829 [pages] => 3 [cite_cscd] => 0 [cite_awos] => 0 [from_id] => 76,75,80 [issue] => 8 [hx_id] => 2377,2378 [sys_level_num] => 1_1 [sys_jg_type] => 11,5 [format_issn_issue_page_pub_year] => f8544e301bc3453cadc203fd17b8bdca-820039162 [title_en] => Properties of cat mutually pumped phase conjugation and two-wave mixing gain in doped KNSBN [volume] => 1 [author_fn] => 许心光;邵宗书;王正平;刘均海;许贵宝;胡大伟 [pub_year] => 2003 [check_180] => 0 [keyword_en] => SPPCs [article_id] => 216581,225143,492216,667545 [begin_page] => 482 [hints] => 1 [author_cn] => Xu Xinguang;Shao Zongshu;Wang Zhengping;Liu Junhai;Xu Guibao;Hu Dawei [language] => English [source_type] => 351 [reference_No] => 22 [cscd_No] => CSCD:1586245 [batch] => 3243,3249,3252 [publication_en] => Chinese Optics Letters [abstract_en] => Cat mutually pumped phase conjugation configuration is discovered and investigated by using two-wave mixing in (KyNa1-y)2z (SrxBa1-x)1-z Nb2O6 (KNSBN) crystal. When only one signal or pumped beam does not give birth to phase conjugation, the maximum reflectivity of signal and pumped beam attain 140% and 30% due to two-wave mixing, respectively. The experimental results show that the two-wave mixing can reduce the threshold of incident beams power, extend the incident angle range, and shorten response rate in the process of self-pumped phase conjugator (SPPC) in KNSBN crystal. 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[jl_keyword_cn_keyword_en] => 泵浦光,自泵浦相耦合,sppcs,knsbn晶体,二波混频,激光技术 [index_keyword] => Optical beam splitters; Optical systems; Photodetectors; Photorefractive materials; Cat mutually pumped phase conjugation; Photorefractive crystals; Self pumped phase conjugator; Two wave mixing; Laser beams [cauthor_ad] => [Xu, X] Lab. of Crystal Mat., Shandong Univ., Ji\'nan 250100, China; [cauthor] => Xu, X(xgxu@icm.sdu.edu.cn) [datebase] => Scopus [format_scopus_No] => fdf3965c16341036045b38d05c7e5eb11227282035 [author_en] => Xu X.@@@ Shao Z.@@@ Wang Z.@@@ Liu J.@@@ Xu G.@@@ Hu D. [publication_iso] => Chin. Opt. Lett. 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Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Jiang, H] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Han, R] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Shao, Z] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Jiang, M] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China [fund_No] => 90201017, NSFC, National Natural Science Foundation of China; 59823003, NSFC, National Natural Science Foundation of China [reference] => Agnesi, A., Guandlini, A., Reali, G., (2002) J. Opt. Soc. Am B, 19, p. 1078; Agnesi, A., Reali, G., Gobbi, P.G., (1998) IEEE J. Quant. Electron., 34, p. 1297; Chai, B.H.T., Loutts, G., Lefaucheur, J., Zhang, X.X., Hong, P., Bass, M., Shcherbakov, I.A., Zagumennyi, A.I., (1994) OSA Proceedings on Advanced Solid-State Lasers, 20, p. 41. , T.Y. Fan, Chai B.H.T. (Eds.), Washington, DC: Optical Society of America; Zagmennyi, A.I., Ostromov, V.G., Shcherbarkov, I.A., Jensen, T., Meyn, J.P., Huber, G., (1992) Sov. J. Quant. Electron., 22, p. 1071; Studenikin, P.A., Zagumennyi, A.I., Zavartsev, Yu.D., Popov, P.A., Shcherbakov, I.A., (1995) Quant. Electron., 25, p. 1162; Jensen, T., Ostroumov, V.G., Meyn, J.-P., Huber, G., Zagumennyi, A.I., Shcherbakov, I.A., (1994) Appl. Phys. B, 58, p. 373; Shimamura, K., Uda, S., Kochurikhin, V.V., Taniuchi, T., Fukuda, T., (1996) Jpn. J. Appl. Phys., 35, p. 1832; Zhang, H.J., Meng, X.L., Zhu, L., Zhang, H.Z., Wang, P., Dawes, J., Wang, C.Q., Chow, Y.T., (1998) Cryst. Res. Technol., 33, p. 801; Zhang, H., Liu, J., Wang, J., Wang, C., Zhu, L., Shao, Z., Meng, X., Yuk Tak Chow, (2002) J. Opt. Soc. Am B, 19, p. 18; Czeranowsky, C., Schmidt, M., Heumann, E., Huber, G., Kutovoi, S., Zavartesev, Y., (2002) Opt. Commun., 205, p. 361; Liu, J., Shao, Z., Zhang, H., Meng, X., Zhu, L., Jiang, M., (2000) Opt. Commun., 173, p. 311; Wang, C.Q., Chow, Y.T., Reekie, L., Gambling, W.A., Zhang, H.J., Zhu, L., Meng, X.L., (2000) Appl. Phys. B, 70, p. 769; Chen, Y.F., Lee, L.J., Huang, T.M., Wang, C.L., (1999) Opt. Commun., 163, p. 198; Zhang, H., Hou, W., Feng, B., Xu, Z., Wu, B., Chen, C., (2000) Chinese J. Lasers B, 9, p. 30; Wei, M., Li, G., Zhu, Y., Wu, X., Yu, Z., Teng, S., (1998) J. Synthetic Crystals, 27, p. 178. , (in Chinese); Qin, L., Meng, X., Zhang, J., Zhu, L., Zhang, H., Xu, B., Jiang, H., (2002) J. Crystal Growth, 242, p. 183; Zhang, H., Meng, X., Liu, J., Zhu, L., Wang, C., Shao, Z., Wang, J., Liu, Y., (2000) J. Crystal Growth, 216, p. 367; Meng, X., Zhu, L., Zhang, H., Lu, M., (1999) J. Synthetic Crystals, 28, p. 23. , (in Chinese); Zhang, H., Meng, X., Zhu, L., Wang, C., Chow, Y.T., Lu, M., (2000) Opt. Mater., 14, p. 25; Zhang, H., Zhu, N., Yang, Q., He, J., Hou, W., Xu, Z., (2000) Acta Photonica Sin., 29, p. 470. , (In Chinese); Jiang, M., (1980) Crystal Physics, p. 478. , Shandong Science and Technology Press, Jinan, China (in Chinese); Yao, J., (1995) Nonlinear Optics Frequency Change and Laser Tunable Technology, p. 19. , Science Press, Beijing China (in Chinese); He, J.L., Luo, G.Z., Wang, H.T., Zhu, S.N., Zhu, Y.Y., Chen, Y.B., Ming, N.B., (2002) Appl. Phys. B, 74, p. 537 [format_title_en_publication_en_pub_year] => ea55c281692c085cd89fa317f3d23bf6727443225 [abstract_en] => The laser performance of Nd:GdVO4 crystal at 1.34 μm was discussed. The crystals were grown by Czochralski method and the laser output was performed under the pumping source of laser diode up to 4.82 W laser output power. It was found that when KTiOPO4 crystal was used as an intracavity double crystal, red laser output was obtained at 671 nm up to 349 mW at room temperature. [from_id] => 76 [cauthor_ad] => [Zhang, H] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China; [hx_id] => 2378 [classification_pub] => JCRGA [datebase] => Scopus [sys_level_num] => 6_1 [sys_jg_type] => 11,9 [format_issn_issue_page_pub_year] => e5641414808bf730df6d75ba12b1317d-1176539472 [title_en] => Laser performance of Nd: GdVO4 crystal at 1.34 μm and intracavity double red laser [index_keyword] => Doping (additives); Gadolinium compounds; Neodymium lasers; Semiconductor lasers; Wavelength laser performance; Crystal growth [standard_in] => Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China [volume] => 249 [source_type] => 351 [pub_year] => 2003 [keyword_en] => A2. Czochralski method; B1. Vanadates; B3. Solid state lasers [article_id] => 492603 [begin_page] => 492 [hints] => 1 [doi] => 10.1016/S0022-0248(02)02131-0 [language] => English [issue] => 43163 [issn] => 0022-0248 [batch] => 3243 [publication_en] => Journal of Crystal Growth [email] => hjzhang@icm.sdu.edu.cn [sys_update_time] => 2018-09-05 15:37:48 [format_title_en_issn_pub_year] => 8b5f370b8bb2c1bae65f8265805f5d2595269711 [publication_iso] => J Cryst Growth [SYS_TAG] => 3 [end_page] => 496 [page] => 492-496 [hb_type] => 2 [article_dt] => Article [jl_language] => english [jl_article_dt] => 期刊论文 [jl_publication_en] => journalofcrystalgrowth [jl_country] => 中国 [jl_keyword_en] => a2czochralskimethod,b3solidstatelasers,b1vanadates [sys_author_in_last_arr] => china [company_id] => 151,0 [author_id] => 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=> 0 [author_en] => Wang Z.@@@ Yuan D.@@@ Xu D.@@@ Lv M.@@@ Cheng X.@@@ Pan L.@@@ Shi X. [format_scopus_No] => 708f63f89606600c64b5b00ae6cb28ba-238013670 [format_doi] => 5b024ec0384173d27dfee5a5b539de68303010004 [author_in] => [Wang, Z] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Yuan, D] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Xu, D] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Lv, M] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Cheng, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China@@@[ Pan, L] Beijing Inst. Radio Metrol./Msrmt., Beijing 100854, China@@@[ Shi, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China [fund_No] => 60178029, NSFC, National Natural Science Foundation of China [reference] => Jung, I.H., Ko, J.M., Shim, K.B., Fukuda, T., Auh, K.H., (2000) J. Crystal Growth, 220, p. 275; Jung, I.H., Auh, K.H., (1999) Mater. Lett., 41, p. 241; Jung, I.H., Fukuda, T., Auh, K.H., (2001) J. Ceram. Process. Res., , in press; Takeda, H., Kato, T., Chani, V.I., Morikoshi, H., Shimamura, K., Fukuda, T., (1999) J. Alloys Compound, 290, p. 79; Eichler, H.J., Ashkenasi, D., Jian, H., Kaminskii, A.A., (1994) Phys. Stat. Sol. A, 146, p. 833; Kaminskii, A.A., Sarkisov, S.E., Mill, B.V., Khodzhabagyan, G.G., (1982) Sov. Phys. Dokl., 27 (5), p. 403; Kaminskii, A.A., Mill, B.V., Khodzhabagyan, G.G., Konstantinova, A.F., Okorochkov, A.I., Silvestrova, I.M., (1983) Phys. Stat. Sol. A, 80, p. 387; Kaminskii, A.A., Silvestrova, I.M., Sarkisov, S.E., Denisenko, G.A., (1983) Phys. Stat. Sol. A, 80, p. 607; Kaminskii, A.A., (1985) Phys. Stat. Sol. A, 87, p. 11 [format_title_en_publication_en_pub_year] => 536d69159363a9739b17f4633a8f6272-1364956706 [abstract_en] => Europium-doped La3Ga5SiO14 single crystals have been grown along c-axis by using the Czochralski method. The structure of the crystal has been studied by X-ray powder diffraction (XRPD) method. The segregation coefficients of Eu3+ in La3Ga5SiO14 crystal were measured by X-ray fluorescence analysis (XRF). For the 1 mol% doping level in the melt, the distribution coefficient of Eu3+ was determined to be 0.558 at%. Transmittance spectrum were carried out in the range of 190-3200 nm at room temperature. The fluorescence properties were investigated. © 2003 Elsevier Science B.V. All rights reserved. [from_id] => 76 [cauthor_ad] => [Wang, Z] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China; [hx_id] => 2378 [classification_pub] => JCRGA [datebase] => Scopus [sys_level_num] => 6_1 [sys_jg_type] => 11 [format_issn_issue_page_pub_year] => 2f4cf3e9c8061581ae696741716060302087310947 [title_en] => Growth and optical properties of Eu3+-doped La3Ga5SiO14 single crystal [index_keyword] => Crystal structure; Fluorescence; Lanthanum compounds; Optical properties; Piezoelectric materials; Semiconductor doping; Single crystals; Solid state lasers; X ray powder diffraction; X-ray fluorescence (XRF) analysis; Crystal growth from melt [standard_in] => Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China; Beijing Inst. Radio Metrol./Msrmt., Beijing 100854, China [volume] => 255 [source_type] => 351 [pub_year] => 2003 [keyword_en] => A1. X-ray diffraction; A2. Czochralski method; B1. Gallium compounds; B2. Piezoelectric materials; B3. Solid-state lasers [article_id] => 492196 [begin_page] => 348 [hints] => 1 [doi] => 10.1016/S0022-0248(03)01269-7 [language] => English [issue] => 43163 [issn] => 0022-0248 [batch] => 3243 [publication_en] => Journal of Crystal Growth [email] => zmwang@icm.sdu.edu.cn [sys_update_time] => 2018-09-05 15:37:47 [format_title_en_issn_pub_year] => 0ffc4382dfbe20daa07767ed52866223844457479 [publication_iso] => J Cryst Growth [SYS_TAG] => 3 [end_page] => 352 [page] => 348-352 [hb_type] => 2 [article_dt] => Article [jl_language] => english [jl_article_dt] => 期刊论文 [jl_publication_en] => journalofcrystalgrowth [jl_country] => 中国 [jl_keyword_en] => a2czochralskimethod,b2piezoelectricmaterials,b3solidstatelasers,a1xraydiffraction,b1galliumcompounds [sys_author_in_last_arr] => china [company_id] => 0,0,0,0,0,0,0 [author_id] => 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72381. Single & two-photon excited fluorescence of two new compounds with 2-benzothiazolyl as electron acceptor SCOPUS SCIE

作者:Cao, DX; Fang, Q; Wang, D; Liu, ZQ

作者机构:[Cao, DX; Fang, Q; Wang, D; Liu, ZQ]Shandong Univ, State Key Lab Crystal Mat, Jinan 250100, Peoples R China.

来源:CHINESE CHEMICAL LETTERS,2003,Vol.14,Issue.5,547-550

资源类型:期刊论文

WOS:000183628800035

72382. 单轴晶非共线相位匹配研究 CSCD SCOPUS

作者:许贵宝;王正平;杜晨林;傅琨;杨绪东;胡惠明;许心光;邵宗书

作者机构:[许贵宝] 山东大学, 晶体材料国家重点实验室, 济南, 山东 250100, 中国.;[王正平] 山东大学, 晶体材料国家重点实验室, 济南, 山东 250100, 中国.;[杜晨林] 山东大学, 晶体材料国家重点实验室, 济南, 山东 250100, 中国.;[傅琨] 山东大学, 晶体材料国家重点实验室, 济南, 山东 250100, 中国.;[杨绪东] 山东大学, 晶体材料国家重点实验室, 济南, 山东 250100, 中国.;[胡惠明] 山东大学, 晶体材料国家重点实验室, 济南, 山东 250100, 中国.;[许心光] 山东大学, 晶体材料国家重点实验室, 济南, 山东 250100, 中国.;[邵宗书] 山东大学, 晶体材料国家重点实验室, 济南, 山东 250100, 中国

来源:中国激光,Zhongguo Jiguang/Chinese Journal of Lasers,2003,Vol.30,Issue.4,315-321

资源类型:期刊论文

72383. Synthesis of rod-like mesoporous silica using mixed surfactants of cetyltrimethylammonium bromid and cetyltrimethylammonium chloride as templates EI SCOPUS SCIE

作者:Han, SH; Hou, WG; Dang, WX; Xu, J; Hu, JF; Li, DQ

作者机构:[Han, SH; Hou, WG; Dang, WX; Xu, J; Hu, JF; Li, DQ]Shandong Univ, State Educ Minist, Key Lab Colloid & Interface Chem, Jinan 250100, Peoples R China.;[Han, SH; Hou, WG; Dang, WX; Xu, J; Hu, JF; Li, DQ] Shandong Univ, Dept Phys, Jinan 250100, Peoples R China.;[Han, SH; Hou, WG; Dang, WX; Xu, J; Hu, JF; Li, DQ] Univ Toronto, Dept Mech & Ind Engn, Toronto, ON M5S 3G8, Canada.

来源:MATERIALS LETTERS,2003,Vol.57,Issue.29,4520-4524

WOS被引数:38

资源类型:期刊论文

WOS:000185733100007

72384. Growth and characterization of Sr3NbGa3Si2O14 single crystals EI SCOPUS SCIE

作者:Wang, ZM; Yuan, DR; Cheng, XF; Shi, XZ; Wei, XC; Duan, XL; Sun, ZH; Luan, CN; Gua, SY; Xu, D; Lv, MK; Pan, LH

作者机构:[Wang, ZM; Yuan, DR; Cheng, XF; Shi, XZ; Wei, XC; Duan, XL; Sun, ZH; Luan, CN; Gua, SY; Xu, D; Lv, MK; Pan, LH]Shandong Univ, State Key Lab Crystal Mat, Jinan 250100, Shandong, Peoples R China.;[Wang, ZM; Yuan, DR; Cheng, XF; Shi, XZ; Wei, XC; Duan, XL; Sun, ZH; Luan, CN; Gua, SY; Xu, D; Lv, MK; Pan, LH] Beijing Inst Radio Metrol & Measurement, Beijing 100854, Peoples R China.

来源:JOURNAL OF CRYSTAL GROWTH,2003,Vol.252,Issue.1-3,236-240

WOS被引数:20

资源类型:期刊论文

WOS:000182145400036

72385. Crystal growth and spectroscopic properties of Er : La3Ga5SiO14 single crystals EI SCOPUS SCIE

作者:Wang, ZM; Yuan, DR; Shi, XZ; Cheng, XF; Xu, D; Lv, M; Pan, LH; Guo, SY

作者机构:[Wang, ZM; Yuan, DR; Shi, XZ; Cheng, XF; Xu, D; Lv, M; Pan, LH; Guo, SY]Shandong Univ, State Key Lab Crystal Mat, Shandong 250100, Peoples R China.;[Wang, ZM; Yuan, DR; Shi, XZ; Cheng, XF; Xu, D; Lv, M; Pan, LH; Guo, SY] Beijing Inst Radio Metrol & Measurement, Beijing 100854, Peoples R China.

来源:JOURNAL OF CRYSTAL GROWTH,2003,Vol.257,Issue.1-2,141-145

WOS被引数:8

资源类型:期刊论文

WOS:000185184200019

72386. Spontaneous vesicle formation in mixed aqueous solution of poly-tailed cationic and anionic surfactants SCOPUS SCIE

作者:Chen, WJ; Li, GZ; Zhai, LM; Li, BQ; Xu, J; Xia, R

作者机构:[Chen, WJ; Li, GZ; Zhai, LM; Li, BQ; Xu, J; Xia, R]Shandong Univ, Key Lab Colloid & Interface Chem, State Educ Minist, Jinan 250100, Peoples R China.;[Chen, WJ; Li, GZ; Zhai, LM; Li, BQ; Xu, J; Xia, R] Jinan Univ, Dept Chem, Jinan 250014, Peoples R China.;[Chen, WJ; Li, GZ; Zhai, LM; Li, BQ; Xu, J; Xia, R] Shandong Univ, Sch Med, Jinan 250012, Peoples R China.;[Chen, WJ; Li, GZ; Zhai, LM; Li, BQ; Xu, J; Xia, R] Res Inst Jinling Petrochem Corp, Nanjing 210046, Peoples R China.;[Chen, WJ; Li, GZ; Zhai, LM; Li, BQ; Xu, J; Xia, R] Beijing Municipal Inst Drug Control, Beijing 100035, Peoples R China.

来源:CHINESE CHEMICAL LETTERS,2003,Vol.14,Issue.3,327-330

WOS被引数:6

资源类型:期刊论文

WOS:000182281900034

72387. Coordination structure of aluminum in magnesium aluminum hydroxide studied by Al-27 NMR SCOPUS SCIE

作者:Han, SH; Hou, WG; Dang, WX; Xu, J

作者机构:[Han, SH; Hou, WG; Dang, WX; Xu, J]Shandong Univ, Key Lab Colloid & Interface Chem, State Educ Minist, Jinan 250100, Peoples R China.

来源:CHINESE CHEMICAL LETTERS,2003,Vol.14,Issue.6,605-608

WOS被引数:1

资源类型:期刊论文

WOS:000183874100018

72388. Growth and properties of UV nonlinear optical crystal ZnCd(SCN)_4 EI SCOPUS

作者:Xinqiang Wang;Dong Xu;Mengkai Lu;Dourong Yuan;Guanghui Zhang;Shouxi Xu;Shiyi Guo;Suening Jiang;Jiurong Liu;Chunfeng Song;Qnan Re

作者机构:[Wang, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Xu, D] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Lu, M] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Yuan, D] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Zhang, G] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Xu, S] Science and Technology Department, Shandong College of Public Security, Jinan 250014, China;[ Guo, S] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Jiang, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Liu, J] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Song, C] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Ren, Q] Optics Department, Shandong University, Jinan 250100, China;[ Huang, J] Experimental Center, Shandong University, Jinan 250100, China;[ Tian, Y] Department of Chemistry, Anhui University, Hefei 210093, China

来源:Materials Research Bulletin: An International Journal Reporting Research on Crystal Growth and Materials Preparation and Characterization,Materials Research Bulletin,2003,Vol.38,Issue.7,1269-1280

资源类型:期刊论文

72389. Middle-phase microemulsions of green surfactant alkyl polyglucosides SCOPUS SCIE

作者:柴金岭;李干佐;张高勇;LOU Anjing;张剑;张越

作者机构:[Chai, J] Lab. for Colloid and Interface Chem., Shandong Univ., Ji'nan 250100, China, Dept. of Chem., Shandong Normal Univ., Ji'nan 250014, China;[ Li, G] Lab. for Colloid and Interface Chem., Shandong Univ., Ji'nan 250100, China;[ Zhang, G] Lab. for Colloid and Interface Chem., Shandong Univ., Ji'nan 250100, China, China Inst. of Daily Chem. Indust., Taiyuan 030001, China;[ Lou, A] Langmuir Cent. for Colloids, Columbia Univ., New York 10027, United States;[ Zhang, J] China Inst. of Daily Chem. Indust., Taiyuan 030001, China;[ Zhang, Y] China Inst. of Daily Chem. Indust., Taiyuan 030001, China

来源:中国科学B辑(英文版),SCIENCE IN CHINA SERIES B-CHEMISTRY,2003,Vol.46,Issue.1,25-34

WOS被引数:5

资源类型:期刊论文

WOS:000181415100005

72390. Simple transmission technique for measuring the electro-optic coefficients of poled polymer films EI SCOPUS SCIE

作者:C. B. Ma;D. Xu;Q. Ren;Z. H. Lv;H. L. Yang;F. Q. Meng;G. H. Zhang;S. Y. Guo;L. X. Sang;Z. G. Wang

作者机构:[Ma, C.B] State Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Xu, D] State Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Ren, Q] Department of Optics, Shandong University, Jinan 250100, China;[ Lv, Z.H] Department of Optics, Shandong University, Jinan 250100, China;[ Yang, H.L] Department of Optics, Shandong University, Jinan 250100, China;[ Meng, F.Q] State Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Zhang, G.H] State Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Guo, S.Y] State Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Sang, L.X] State Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Wang, Z.G] State Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China

来源:Journal of Materials Science Letters,JOURNAL OF MATERIALS SCIENCE LETTERS,2003,Vol.22,Issue.1,49-51

WOS被引数:6

资源类型:期刊论文

WOS:000180000000014

72391. Study on the impedance characteristic and electrocatalytic activity of platinum-modified polyaniline film SCOPUS SCIE

作者:Niu, L; Li, QH; Chen, X; Wei, FH; Wang, H; Zhang, H

作者机构:[Niu, L; Li, QH; Chen, X; Wei, FH; Wang, H; Zhang, H]Shandong Univ, Sch Chem & Chem Engn, Jinan 250100, Peoples R China.;[Niu, L; Li, QH; Chen, X; Wei, FH; Wang, H; Zhang, H] Shandong Anal & Test Ctr, Jinan 250014, Peoples R China.

来源:JOURNAL OF THE CHINESE CHEMICAL SOCIETY,2003,Vol.50,Issue.6,1165-1170

WOS被引数:1

资源类型:期刊论文

WOS:000188063700008

72392. Influence of molecular structures of europium bisphthalocyanines on organization of supramolecular assemblies formed at the air/water interface EI SCOPUS SCIE

作者:Liu, HG; Feng, XS; Jiang, JZ; Zhang, LJ; Lan, WZ; Lee, YI; Jang, KW; Qian, DJ; Yang, KZ

作者机构:[Liu, HG; Feng, XS; Jiang, JZ; Zhang, LJ; Lan, WZ; Lee, YI; Jang, KW; Qian, DJ; Yang, KZ]Shandong Univ, Key Lab Colloid & Interface Chem Educ Minist, Jinan 250100, Peoples R China.;[Liu, HG; Feng, XS; Jiang, JZ; Zhang, LJ; Lan, WZ; Lee, YI; Jang, KW; Qian, DJ; Yang, KZ] Changwon Natl Univ, Coll Nat Sci, Chang Won 641773, South Korea.

来源:MATERIALS SCIENCE & ENGINEERING C-BIOMIMETIC AND SUPRAMOLECULAR SYSTEMS,2003,Vol.23,Issue.4,501-507

WOS被引数:11

资源类型:期刊论文

WOS:000183918400006

72393. Growth and optical properties of Ho,Yb : YAl3(BO3)(4) crystal EI SCOPUS SCIE

作者:Li, J; Wang, JY; Tan, H; Cheng, XF; Song, F; Zhang, HJ; Zhao, SR

作者机构:[Li, J; Wang, JY; Tan, H; Cheng, XF; Song, F; Zhang, HJ; Zhao, SR]Shandong Univ, State Key Lab Crystal Mat, Jinan 250100, Peoples R China.;[Li, J; Wang, JY; Tan, H; Cheng, XF; Song, F; Zhang, HJ; Zhao, SR] Nankai Univ, Coll Phys, Photon Ctr, Tianjin, Peoples R China.

来源:JOURNAL OF CRYSTAL GROWTH,2003,Vol.256,Issue.3-4,324-327

WOS被引数:28

资源类型:期刊论文

WOS:000184573400017

72394. Diode-end-pumped continuous-wave and Q-switched Nd : GdVO4/KTP laser at 671 nm EI SCOPUS SCIE

作者:Du CL;Qin LJ;Zhang HJ;Meng XL;Xu GB;Wang ZP;Xu XG;Zhu L;Xu BC;Wang JY

作者机构:[Du, C] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Qin, L] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Zhang, H] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Meng, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Xu, G] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Wang, Z] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Xu, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Zhu, L] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Xu, B] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Wang, J] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Shao, Z] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China

来源:Japanese journal of applied physics,JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS,2003,Vol.42,Issue.8,5063-5065

WOS被引数:2

资源类型:期刊论文

WOS:000185422900034

72395. Enantioseparation of 15 organic phosphonate esters on the cellulose tris(3,5-dimethylphenyl carbamate) chiral stationary phase by HPLC EI SCOPUS SCIE

作者:Wei Du;Guosheng Yang;Xinqiang Wang;Shiling Yuan;Lan Zhou;Dong Xu;Chengpu Liu

作者机构:[Du, W] Sch. of Chem./Chemical Engineering, Shandong University, Jinan 250100, China, Stt. Key Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Yang, G] Sch. of Chem./Chemical Engineering, Shandong University, Jinan 250100, China;[ Wang, X] Stt. Key Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Yuan, S] Sch. of Chem./Chemical Engineering, Shandong University, Jinan 250100, China;[ Zhou, L] Sch. of Chem./Chemical Engineering, Shandong University, Jinan 250100, China, Institute of Veterinary Drug Control, Shandong Province, Jinan 250022, China;[ Xu, D] Stt. Key Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Liu, C] Sch. of Chem./Chemical Engineering, Shandong University, Jinan 250100, China

来源:Talanta: The International Journal of Pure and Applied Analytical Chemistry,TALANTA,2003,Vol.60,Issue.6,1187-1195

WOS被引数:16

资源类型:期刊论文

WOS:000185041200012

72396. A dendrite with \\\"sierpinski gasket\\\" fractal morphology in matt glaze of LiAlSiO_4-SiO_2 system SCOPUS SCIE

作者:Shanrong Zhao;Jin Tan;Jiyang Wang

作者机构:[Zhao, S] China University of Geosciences, Wuhan 430074, China, Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Tan, J] China University of Geosciences, Wuhan 430074, China;[ Wang, J] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Xu, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Liu, H] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China

来源:Fractals: An interdisciplinary journal on the complex geometry of nature,FRACTALS-COMPLEX GEOMETRY PATTERNS AND SCALING IN NATURE AND SOCIETY,2003,Vol.11,Issue.3,271-276

WOS被引数:1

资源类型:期刊论文

WOS:000185960300006

72397. Influence of annealing condition on photoluminescence characteristics of AlGaAs/GaAs multiple quantum well EI SCOPUS SCIE

作者:Ying, MJ; Xia, YY; Liu, PJ; Liu, XD; Zhao, MW; Wang, Z

作者机构:[Ying, MJ; Xia, YY; Liu, PJ; Liu, XD; Zhao, MW; Wang, Z]Shandong Univ, Dept Optoelect, Jinan 250100, Peoples R China.;[Ying, MJ; Xia, YY; Liu, PJ; Liu, XD; Zhao, MW; Wang, Z] Shandong Univ, Dept Phys, Jinan 250100, Peoples R China.;[Ying, MJ; Xia, YY; Liu, PJ; Liu, XD; Zhao, MW; Wang, Z] Shanghai Jiao Tong Univ, Res Inst MicroNanometer Sci & Technol, Shanghai 200030, Peoples R China.;[Ying, MJ; Xia, YY; Liu, PJ; Liu, XD; Zhao, MW; Wang, Z] Shandong Univ, Inst Crystal Mat, Jinan 250100, Peoples R China.

来源:MATERIALS LETTERS,2003,Vol.57,Issue.19,2932-2935

WOS被引数:2

资源类型:期刊论文

WOS:000183268500028

72398. Properties of cat mutually pumped phase conjugation and two-wave mixing gain in doped KNSBN CSCD SCOPUS

作者:Xu Xinguang;Shao Zongshu;Wang Zhengping;Liu Junhai;Xu Guibao;Hu Dawei

作者机构:[Xu, X] Lab. of Crystal Mat., Shandong Univ., Ji'nan 250100, China;[ Shao, Z] Lab. of Crystal Mat., Shandong Univ., Ji'nan 250100, China;[ Wang, Z] Lab. of Crystal Mat., Shandong Univ., Ji'nan 250100, China;[ Liu, J] Lab. of Crystal Mat., Shandong Univ., Ji'nan 250100, China;[ Xu, G] Lab. of Crystal Mat., Shandong Univ., Ji'nan 250100, China;[ Hu, D] Lab. of Crystal Mat., Shandong Univ., Ji'nan 250100, China

来源:Chinese Optics Letters,2003,Vol.1,Issue.8,482-484

资源类型:期刊论文

72399. Laser performance of Nd: GdVO4 crystal at 1.34 μm and intracavity double red laser SCOPUS

作者:Zhang H.; Du C.; Wang J.; Hu X.; Xu X.; Dong C.; Liu J.; Kong H.; Jiang H.; Han R.; Shao Z.; Jiang M.

作者机构:[Zhang, H] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Du, C] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Wang, J] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Hu, X] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Xu, X] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Dong, C] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Liu, J] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Kong, H] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Jiang, H] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Han, R] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Shao, Z] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China;[ Jiang, M] Natl. Lab. of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China

来源:Journal of Crystal Growth,2003,Vol.249,Issue.43163,492-496

资源类型:期刊论文

72400. Growth and optical properties of Eu3+-doped La3Ga5SiO14 single crystal SCOPUS

作者:Wang Z.; Yuan D.; Xu D.; Lv M.; Cheng X.; Pan L.; Shi X.

作者机构:[Wang, Z] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Yuan, D] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Xu, D] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Lv, M] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Cheng, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China;[ Pan, L] Beijing Inst. Radio Metrol./Msrmt., Beijing 100854, China;[ Shi, X] Stt. Key Lab. of Crystal Materials, Shandong University, Jinan 250100, China

来源:Journal of Crystal Growth,2003,Vol.255,Issue.43163,348-352

资源类型:期刊论文

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