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基于掺杂 CdS 量子点的分子印迹壳聚糖膜的尿素电化学传感器。

A urea electrochemical sensor based on molecularly imprinted chitosan film doping with CdS quantum dots.

机构信息

College of Material Science and Engineering, Huaqiao University, Xiamen 361021, People's Republic of China.

出版信息

Anal Biochem. 2012 Jul 1;426(1):40-6. doi: 10.1016/j.ab.2012.03.024. Epub 2012 Apr 4.

Abstract

An improved imprinted film-based electrochemical sensor for urea recognition was developed using CdS quantum dots (QDs) doped chitosan as the functional matrix. The microstructure and composition of the imprinted films depicted by scanning electron microscopy (SEM), attenuated total reflection infrared (ATR-IR), X-ray diffraction (XRD), and electrochemical impedance spectroscopy (EIS) indicated the fabricated feasibility of the nanoparticle doped films via in situ electrodeposition. Differential pulse voltammetric responses under the optimal fabrication conditions showed that the sensitivity of CdS QDs-MIP (molecularly imprinted polymer) electrochemical sensor was enhanced from the favorable electron transfer and magnified surface area of CdS QDs with a short adsorption equilibrium time (7 min), wide linear range (5.0 × 10(-12) to 4.0 × 10(-10) M and 5.0 × 10(-10) to 7.0 × 10(-8) M), and low detection limit (1.0 × 10(-12) M). Meanwhile, the fabricated sensor showed excellent specific recognition to template molecule among the structural similarities and coexistence substances. Furthermore, the proposed sensor was applied to determine the urea in human blood serum samples based on its good reproducibility and stability, and the acceptable recovery implied its feasibility for practical application.

摘要

一种基于印迹膜的电化学传感器,用于尿素识别,使用掺杂壳聚糖的 CdS 量子点 (QD) 作为功能基质。扫描电子显微镜 (SEM)、衰减全反射红外 (ATR-IR)、X 射线衍射 (XRD) 和电化学阻抗谱 (EIS) 描绘的印迹膜的微观结构和组成表明,通过原位电沉积可以制备出掺杂纳米颗粒的薄膜。在最佳制备条件下的差分脉冲伏安响应表明,CdS QDs-MIP(分子印迹聚合物)电化学传感器的灵敏度得到了提高,这得益于 CdS QDs 的有利电子转移和放大的表面积,以及较短的吸附平衡时间(7 min)、宽线性范围(5.0×10(-12) 至 4.0×10(-10) M 和 5.0×10(-10) 至 7.0×10(-8) M)和低检测限(1.0×10(-12) M)。同时,该传感器对结构相似和共存物质中的模板分子表现出优异的特异性识别。此外,该传感器还基于其良好的重现性和稳定性应用于测定人血清样品中的尿素,可接受的回收率表明其在实际应用中的可行性。

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