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首页> 外文期刊>Nano-Micro Letters >Fabrication of a Highly Sensitive Hydrazine Electrochemical Sensor Based on Bimetallic Au-Pt Hybrid Nanocomposite onto Modified Electrode
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Fabrication of a Highly Sensitive Hydrazine Electrochemical Sensor Based on Bimetallic Au-Pt Hybrid Nanocomposite onto Modified Electrode

机译:基于修饰电极上双金属Au-Pt杂化纳米复合材料的高灵敏度肼电化学传感器的制备

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摘要

In this research a novel nickel complex was used as electrocatalyst for electrooxidation of hydrazine. A nano-structured nickel-complex was electrodeposited on a bimetallic Au-Pt inorganic-organic hybrid nanocomposite modified electrode. The electrode possesses a three-dimensional (3D) porous network nanoarchitecture, in which the bimetallic Au-Pt NPs serving as metal nanoparticle based microelectrode ensembles are distributed in the matrix of interlaced 3, 3′, 5, 5′-Tetramethylbenzidine (TMB) organic nanofibers (NFs). Surface structure and composition of the sensor was characterized by scanning electron microscopy. Electrocatalytic oxidation of hydrazine on the surface of modified electrode was investigated with cyclic voltammetry method. The results showed that the nickel-complex films displayed excellent electrochemical catalytic activities towards hydrazine oxidation. The hydrodynamic amperometry at rotating modified electrode at constant potential versus reference electrode was used for detection of hydrazine. Under optimized conditions the calibration plots were linear in the concentration range of 0.2–85 μM and detection limit was found to be 0.1 μM. The modified electrode exhibited reproducible behavior and a high level stability during the electrochemical experiments, making it particularly suitable for the analytical purposes.
机译:在这项研究中,一种新型的镍络合物被用作肼的电氧化电催化剂。将纳米结构镍复合物电沉积在双金属Au-Pt无机-有机杂化纳米复合材料修饰电极上。电极具有三维(3D)多孔网络纳米结构,其中用作金属纳米粒子基微电极集合体的双金属Au-Pt NPs分布在交错的3、3',5、5'-四甲基联苯胺(TMB)的基质中有机纳米纤维(NFs)。传感器的表面结构和组成通过扫描电子显微镜表征。采用循环伏安法研究了肼在修饰电极表面的电催化氧化作用。结果表明,镍配合物膜对肼氧化表现出优异的电化学催化活性。在恒定电势下相对于参比电极旋转修饰电极上的流体力学安培法用于检测肼。在优化的条件下,校准曲线在0.2-85μM的浓度范围内呈线性,检测极限为0.1μM。修饰的电极在电化学实验中表现出可再现的行为和高水平的稳定性,使其特别适合于分析目的。

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