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基于4-硝基邻苯二甲腈-(NC)2C6H3-NO2修饰电极对NADH与氧化还原活性物质(NC)2C6H3-NHOH/(NC)2C6H3-NO之间反应机理和动力学的电化学研究。

Electrochemical investigations of the reaction mechanism and kinetics between NADH and redox-active (NC)2C6H3-NHOH/(NC)2C6H3-NO from 4-nitrophthalonitrile-(NC)2C6H3-NO2-modified electrode.

作者信息

Lima Phabyanno Rodrigues, Santos Wilney de Jesus Rodrigues, de Oliveira Adriano Bof, Goulart Marília Oliveira Fonseca, Kubota Lauro Tatsuo

机构信息

Institute of Chemistry, UNICAMP, Campinas, SP, Brazil.

出版信息

Biosens Bioelectron. 2008 Nov 15;24(3):448-54. doi: 10.1016/j.bios.2008.04.023. Epub 2008 May 4.

Abstract

A simple and sensitive method for the electrocatalytic detection of NADH on a carbon paste electrode modified with a redox-active (NC)(2)C(6)H(3)-NO/(NC)(2)C(6)H(3)-NHOH (NOPH/NHOHPH) electrogenerated in situ from 4-nitrophthalonitrile (4-NPHN) is presented. The electrode modified with 4-NPHN showed an efficient electrocatalytic activity towards the oxidation of NADH with activation overpotential of 0.12V vs. Ag/AgCl. The formation of an intermediate charge transfer complex is proposed for the charge transfer reaction between NADH and the 4-NPHN-resulting system. The second-order rate constant for electrocatalytic oxidation of NADH, kappa(obs), and the apparent Michaelis-Menten constant K(M), at pH 7.0 were evaluated with rotating disk electrode (RDE) experiments, giving 1.0 x 10(4)mol(-1)Ls(-1) and 2.7 x 10(-5)mol L(-1), respectively. Employing the Koutecky-Levich approach indicated that the NADH oxidation reaction involves two electrons. The sensor provided a linear response range for NADH from 0.8 up to 8.5 micromol L(-1) with sensitivity, detection, quantification limits and time response of 0.50 microA L micromol(-1), 0.25micromol L(-1), 0.82 micromol L(-1) and 0.1s, respectively. The repeatability of the measurements with the same sensor and different sensors, evaluated in terms of relative standard deviation, were 4.1 and 5.0%, respectively, for n=10.

摘要

本文提出了一种简单灵敏的方法,用于在由4-硝基邻苯二甲腈(4-NPHN)原位电生成的氧化还原活性(NC)₂C₆H₃-NO/(NC)₂C₆H₃-NHOH(NOPH/NHOHPH)修饰的碳糊电极上对NADH进行电催化检测。用4-NPHN修饰的电极对NADH的氧化表现出高效的电催化活性,相对于Ag/AgCl的活化过电位为0.12V。提出了一种中间电荷转移络合物的形成,用于NADH与4-NPHN生成体系之间的电荷转移反应。通过旋转圆盘电极(RDE)实验评估了pH 7.0时NADH电催化氧化的二级速率常数κ(obs)和表观米氏常数K(M),分别为1.0×10⁴mol⁻¹Ls⁻¹和2.7×10⁻⁵mol L⁻¹。采用Koutecky-Levich方法表明NADH氧化反应涉及两个电子。该传感器对NADH的线性响应范围为0.8至8.5 μmol L⁻¹,灵敏度、检测限、定量限和时间响应分别为0.50 μA L μmol⁻¹、0.25 μmol L⁻¹、0.82 μmol L⁻¹和0.1s。对于n = 10,用相同传感器和不同传感器进行测量的重复性,以相对标准偏差计,分别为4.1%和5.0%。

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