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使用BiTe电化学传感器超灵敏检测过氧化氢

Ultrasensitive Detection of Hydrogen Peroxide Using BiTe Electrochemical Sensors.

作者信息

Zhao Fujia, Zhou Shan, Zhang Yingjie

机构信息

Department of Materials Science and Engineering and Materials Research Laboratory, University of Illinois, Urbana, Illinois 61801, United States.

出版信息

ACS Appl Mater Interfaces. 2021 Jan 27;13(3):4761-4767. doi: 10.1021/acsami.0c19911. Epub 2021 Jan 13.

Abstract

Electrochemical sensors, with high accuracy, good selectivity, and linear response, have been widely used for environmental protection, health monitoring, and disease treatment. However, to date, these sensors still have limit sensitivity or otherwise require the use of high-cost materials such as noble metals and enzymes. Here, we report a novel electrochemical sensor using a topological insulator, BiTe. Through liquid-phase exfoliation, we prepared nano- and microflakes of BiTe and measured their performance in hydrogen peroxide sensing via electrocatalytic reduction processes. Our devices exhibit a sensitivity of ∼4900 μA mM cm and a detection limit of ∼10 molar, both of which are superior to typical noble metal-based electrochemical sensors. Through electrochemical analysis and microkinetic simulations, we extracted the kinetic parameters and gained insights into the reaction mechanism. We attribute the ultrahigh sensitivity to the facile electron transfer at the BiTe-aqueous solution interface.

摘要

电化学传感器具有高精度、良好的选择性和线性响应,已广泛应用于环境保护、健康监测和疾病治疗。然而,迄今为止,这些传感器仍具有有限的灵敏度,或者需要使用贵金属和酶等高成本材料。在此,我们报道了一种使用拓扑绝缘体BiTe的新型电化学传感器。通过液相剥离,我们制备了BiTe的纳米和微米薄片,并通过电催化还原过程测量了它们在过氧化氢传感方面的性能。我们的器件表现出约4900 μA mM cm的灵敏度和约10摩尔的检测限,这两者均优于典型的基于贵金属的电化学传感器。通过电化学分析和微观动力学模拟,我们提取了动力学参数并深入了解了反应机制。我们将超高灵敏度归因于BiTe-水溶液界面处便捷的电子转移。

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