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镍和钴在双金属纳米线中协同作用,用于电化学检测过氧化氢。

Ni and Co synergy in bimetallic nanowires for the electrochemical detection of hydrogen peroxide.

机构信息

Nanomaterials Research Group, Physics Division, PINSTECH, Islamabad 44000, Pakistan.

Centre for High Energy Physics, University of the Punjab, Lahore 54590, Pakistan.

出版信息

Nanotechnology. 2021 May 14;32(20):205501. doi: 10.1088/1361-6528/abe4fb.

Abstract

The development of a highly sensitive and selective non-enzymatic electrode catalyst for the detection of a target molecule was remained a great challenge. In this regard, bimetallic nanowires (BMNWs) are considered as promising electrode material for their fascinating physical/chemical properties superior to a single system. In this article, nickel cobalt (Ni -Co) BMNWs with tunable stoichiometry were prepared by a template assisted electrodeposition method and their catalytic performance was investigated for the detection of hydrogen peroxide (HO). It has been found that Ni-Co (0.5:1) BMNWs/PC electrode exhibits superior non-enzymatic sensing ability toward HO detection with a high selectivity. The electrode shows fast response within ∼3 s and an excellent reproducible sensitivity of 2211.4 μAmM cm, which is the best compared to the individual Ni, Co, Ni-Co (0.3:1) BMNWs and previously reported electrodes. In addition, the electrode shows a linear response in the wide concentration range from 0.005 mM to 9 mM, low detection limit of 0.5 μM (S/N = 3.2) and a relatively long-term storage (50 d). Moreover, the sensor reveals excellent results for HO detection in the real samples. The enhanced sensitivity of the Ni-Co (0.5:1) BMNWs based electrode may be due to the stable structure and synergy of Ni and Co. The results demonstrate that the catalytic activity of the electrode binary catalyst towards HO detection can be improved by adjusting the Ni/Co ratio in BMNWs. The excellent performance of the electrode suggests that Ni-Co BMNWs are promising candidate for the construction of cost-effective electrochemical sensors for medical and industrial applications.

摘要

开发用于检测目标分子的高灵敏度和选择性非酶电极催化剂仍然是一个巨大的挑战。在这方面,双金属纳米线 (BMNWs) 因其具有优于单一体系的迷人物理/化学性质而被认为是很有前途的电极材料。在本文中,通过模板辅助电沉积法制备了具有可调化学计量比的镍钴 (Ni-Co) BMNWs,并研究了它们对过氧化氢 (HO) 的催化性能。研究发现,Ni-Co (0.5:1) BMNWs/PC 电极对 HO 检测具有优异的非酶传感能力,具有高选择性。该电极在约 3 s 内快速响应,并具有出色的可重现灵敏度 2211.4 μAmM cm,与单个 Ni、Co、Ni-Co (0.3:1) BMNWs 和以前报道的电极相比,这是最好的。此外,该电极在从 0.005 mM 到 9 mM 的宽浓度范围内表现出线性响应,检测限低至 0.5 μM(S/N = 3.2),并且具有相对较长的储存期(50 d)。此外,该传感器在实际样品中对 HO 的检测结果也非常出色。Ni-Co (0.5:1) BMNWs 基电极的灵敏度提高可能是由于 Ni 和 Co 的稳定结构和协同作用。结果表明,通过调整 BMNWs 中的 Ni/Co 比,可以提高电极二元催化剂对 HO 检测的催化活性。该电极的优异性能表明,Ni-Co BMNWs 是用于构建用于医疗和工业应用的经济型电化学传感器的有前途的候选材料。

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