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基于氧化锆纳米颗粒膜修饰电极的增强型电化学发光用于甲基对硫磷的选择性检测。

Enhanced electrochemiluminescence employed for the selective detection of methyl parathion based on a zirconia nanoparticle film modified electrode.

作者信息

Zhou Hankun, Gan Ning, Hou Jianguo, Li Tianhua, Cao Yuting

机构信息

The State Key Laboratory Base of Novel Functional Materials and Preparation Science, Faculty of Material Science and Chemical Engineering of Ningbo University, China.

出版信息

Anal Sci. 2012;28(3):267-73. doi: 10.2116/analsci.28.267.

Abstract

A simple, rapid and sensitive electrochemiluminescence (ECL) sensor was proposed for direct measurements of methyl parathion (MP) based on the strong affinity of a nano zirconia particles (ZrO(2) NPs) modified film on the electrode to the phosphoric group. ZrO(2) NPs, which could provide a larger absorption area to immobilize organophosphorus, was firstly modified on the glassy carbon electrode surface to prepare the proposed ECL sensor (ZrO(2)/GC). Subsequently, the ZrO(2)/GC electrode was scanned from -0.8 to +0.6 V to obtain the background signal at 0.44 V in a luminol/KCl solution. Then, a certain concentration of MP was added to an aqueous solution for 240 s, which was absorbed onto the ZrO(2)/GC electrode surface. Moreover, the MP absorbed on the surface of the ZrO(2)/GC electrode enhanced the ECL signal of luminol in the luminol/KCl solution, which increased with the concentration of MP. As a result, a novel ECL sensor was obtained in a luminol/KCl solution. The MP was determined in the range of from 3.8 × 10(-11) to 3.8 × 10(-6) mol L(-1), with a low detection limit of 1.27 × 10(-11) mol L(-1) (S/N = 3). The proposed ECL sensor performance for MP detection will open a new field in the application of rapid and screen detection of ultra-trace amounts of organ phosphorus pesticides (OPs) of vegetables used in farm markets.

摘要

基于纳米氧化锆颗粒(ZrO₂ NPs)修饰膜对电极上磷酸基团的强亲和力,提出了一种用于直接测定甲基对硫磷(MP)的简单、快速且灵敏的电化学发光(ECL)传感器。首先在玻碳电极表面修饰ZrO₂ NPs,其可为固定有机磷提供更大的吸附面积,从而制备出所提出的ECL传感器(ZrO₂/GC)。随后,将ZrO₂/GC电极在-0.8至+0.6 V范围内扫描,在鲁米诺/KCl溶液中于0.44 V处获得背景信号。然后,向水溶液中加入一定浓度的MP并保持240 s,MP被吸附到ZrO₂/GC电极表面。此外,吸附在ZrO₂/GC电极表面的MP增强了鲁米诺/KCl溶液中鲁米诺的ECL信号,该信号随MP浓度的增加而增强。结果,在鲁米诺/KCl溶液中获得了一种新型ECL传感器。MP的测定范围为3.8×10⁻¹¹至3.8×10⁻⁶ mol L⁻¹,检测限低至1.27×10⁻¹¹ mol L⁻¹(S/N = 3)。所提出的用于检测MP的ECL传感器性能将为农贸市场蔬菜中超痕量有机磷农药(OPs)的快速筛查检测应用开辟一个新领域。

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