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基于 PtAu 双金属纳米粒子修饰的石墨烯-碳纳米管复合材料的没食子酸丙酯分子印迹电化学传感器。

Molecularly imprinted electrochemical sensor for propyl gallate based on PtAu bimetallic nanoparticles modified graphene-carbon nanotube composites.

机构信息

College of Chemical Engineering, Qingdao University of Science & Technology, Qingdao 266042, PR China.

School of Biological Science and Technology, University of Jinan, Jinan 250022, PR China.

出版信息

Biosens Bioelectron. 2015 Jun 15;68:563-569. doi: 10.1016/j.bios.2015.01.029. Epub 2015 Jan 14.

Abstract

A novel molecularly imprinted electrochemical sensor for propyl gallate (PG) determination was developed via electropolymerization of an o-phenylenediamine membrane in the presence of template molecules on glassy carbon electrode surface modified by PtAu bimetallic nanoparticles-capped graphene-carbon nanotubes composites (PtAu-GrCNTs). The modified electrodes were characterized by cyclic voltammetry, scanning electron microscope, x-ray diffraction and chronoamperometry. Moreover, experimental parameters such as scan cycles, incubation time, molar ratios of template molecules to functional monomers and extraction time were optimized. It was found that the PtAu-GrCNTs composite could effectively enhance the electron transfer efficiency and remarkably improve the sensitivity of the sensor. The results revealed the sensor displayed superb resistance to no-specific binding, very attractive detection limit as low as 2.51×10(-8) mol/L, and a wide linear range from 7×10(-8) mol/L to 1×10(-5) mol/L towards PG. Furthermore, the MIPs sensor was also successfully used for the detection of PG in food samples. Therefore, the MIPs-based electrochemical sensing strategy might provide a sensitive, rapid, and cost-effective method for PG determination and related food safety analysis.

摘要

一种新型的分子印迹电化学传感器用于没食子酸丙酯(PG)的测定,是通过在玻碳电极表面上的 PtAu 双金属纳米粒子-覆盖的石墨烯-碳纳米管复合材料(PtAu-GrCNTs)修饰的模板分子存在下聚合邻苯二胺膜而开发的。修饰后的电极通过循环伏安法、扫描电子显微镜、X 射线衍射和计时安培法进行了表征。此外,还优化了实验参数,如扫描循环、孵育时间、模板分子与功能单体的摩尔比和提取时间。结果表明,PtAu-GrCNTs 复合材料可以有效地提高电子转移效率,并显著提高传感器的灵敏度。结果表明,该传感器对非特异性结合具有出色的抗性,对 PG 的检测限低至 2.51×10(-8)mol/L,线性范围从 7×10(-8)mol/L 到 1×10(-5)mol/L。此外,该 MIPs 传感器还成功地用于食品样品中 PG 的检测。因此,基于 MIPs 的电化学传感策略可能为 PG 的测定和相关食品安全分析提供一种灵敏、快速和经济有效的方法。

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