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首页> 外文期刊>Electrochimica Acta >Fabrication of Ru-Pd bimetallic monolayer on nanoporous gold film electrode with excellent electrocatalytic performance towards captopril oxidation
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Fabrication of Ru-Pd bimetallic monolayer on nanoporous gold film electrode with excellent electrocatalytic performance towards captopril oxidation

机译:纳米多孔金膜电极上Ru-Pd双金属单层的制备及其对卡托普利氧化的电催化性能

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This paper describes a simple and novel method to construct ruthenium-palladium (RuPd) bimetallic thin films by coating thin layer of RuPd metals on the nanoporous gold film (NPGF) electrode. The codeposition of Ru and Pd was done through oxidation of copper underpotential deposition (UPD) layer by Ru and Pd ions. This low RuPd-loading electrode (RuPdNPGF) behaved as the nanostructured bimetallic RuPd for the detection of captopril (CAP). Whereas at the surface of the bare electrode an electrochemical activity for CAP cannot be observed, a very sharp anodic peak of the potential of -0.295 V (vs. Ag/AgCl) in pH = 7.0 is obtained using the prepared RuPdNPGF electrode. RuPdNPGF exhibited an excellent performance toward electrochemical oxidation of CAP without any additional mediator showing a significant decrease in the anodic over potential, a high sensitivity and a low detection limit (1.25 x 10 (9) M) for CAP. Under the optimized conditions, the amperometric of CAP showed two linear ranges for determination of CAP: 2.50 x 10 (9) to 4.75 x 10 M-7 CAP and 2.5 x 10 (6) to 3.25 x 10 M-5 CAP. The results show that the RuPdNPGF electrode exhibited a selective, rapid response, good stability with excellent precision (RSD = 2.19%). (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种简单新颖的方法,通过在纳米多孔金膜(NPGF)电极上涂覆RuPd金属薄层来构建钌-钯(RuPd)双金属薄膜。 Ru和Pd的共沉积是通过Ru和Pd离子对铜的欠电位沉积(UPD)层进行氧化而完成的。这种低RuPd负载电极(RuPdNPGF)表现为用于检测卡托普利(CAP)的纳米结构双金属RuPd。尽管在裸电极表面未观察到CAP的电化学活性,但使用制备的RuPdNPGF电极在pH = 7.0时获得了-0.295 V(vs。Ag / AgCl)的非常尖锐的阳极峰。 RuPdNPGF对CAP的电化学氧化表现出优异的性能,而没有任何其他介体,显示CAP的阳极过电位显着降低,高灵敏度和低检测限(1.25 x 10(9)M)。在最佳条件下,CAP的安培数显示出两个用于确定CAP的线性范围:2.50 x 10(9)至4.75 x 10 M-7 CAP和2.5 x 10(6)至3.25 x 10 M-5 CAP。结果表明,RuPdNPGF电极表现出选择性,快速响应,良好的稳定性和极好的精度(RSD = 2.19%)。 (C)2015 Elsevier Ltd.保留所有权利。

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