标题：CdTe quantum dots@luminol as signal amplification system for chrysoidine with chemiluminescence-chitosan/graphene oxide-magnetite-molecularly imprinting sensor
作者：Duan, Huimin ;Li, Leilei ;Wang, Xiaojiao ;Wang, Yanhui ;Li, Jianbo ;Luo, Chuannan
作者机构：[Duan, Huimin ;Li, Leilei ;Wang, Xiaojiao ;Wang, Yanhui ;Li, Jianbo ;Luo, Chuannan ] Key Laboratory of Chemical Sensing and Analysis, Universities of 更多
来源：Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy
摘要：A sensitive chemiluminescence (CL) sensor based on chemiluminescence resonance energy transfer (CRET) in CdTe quantum dots@luminol (CdTe QDs@luminol) nanomaterials combined with chitosan/graphene oxide-magnetite-molecularly imprinted polymer (Cs/GM-MIP) for sensing chrysoidine was developed. CdTe QDs@luminol was designed to not only amplify the signal of CL but also reduce luminol consumption in the detection of chrysoidine. On the basis of the abundant hydroxy and amino, Cs and graphene oxide were introduced into the GM-MIP to improve the adsorption ability. The adsorption capacities of chrysoidine by both Cs/GM-MIP and non-imprinted polymer (Cs/GM-NIP) were investigated, and the CdTe QDs@luminol and Cs/GM-MIP were characterized by UV-vis, FTIR, SEM and TEM. The proposed sensor can detect chrysoidine within a linear range of 1.0 × 10- 7- 1.0 × 10- 5mol/L with a detection limit of 3.2 × 10- 8mol/L (3δ) due to considerable chemiluminescence signal enhancement of the CdTe quantum dots@luminol detector and the high selectivity of the Cs/GM-MIP system. Under the optimal conditions of CL, the CdTe QDs@luminol-Cs/GM-MIP-CL sensor was used for chrysoidine determination in samples with satisfactory recoveries in the range of 90-107%.
© 2015 Published by Elsevier B.V.