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基于钼的层状纳米结构用于生物分子的电化学传感。

Mo-Based Layered Nanostructures for the Electrochemical Sensing of Biomolecules.

机构信息

Department of Engineering, University of Messina, C.da Di Dio, I-98166 Messina, Italy.

出版信息

Sensors (Basel). 2020 Sep 21;20(18):5404. doi: 10.3390/s20185404.

Abstract

Mo-based layered nanostructures are two-dimensional (2D) nanomaterials with outstanding characteristics and very promising electrochemical properties. These materials comprise nanosheets of molybdenum (Mo) oxides (MoO and MoO), dichalcogenides (MoS, MoSe, MoTe), and carbides (MoC), which find application in electrochemical devices for energy storage and generation. In this feature paper, we present the most relevant characteristics of such Mo-based layered compounds and their use as electrode materials in electrochemical sensors. In particular, the aspects related to synthesis methods, structural and electronic characteristics, and the relevant electrochemical properties, together with applications in the specific field of electrochemical biomolecule sensing, are reviewed. The main features, along with the current status, trends, and potentialities for biomedical sensing applications, are described, highlighting the peculiar properties of Mo-based 2D-nanomaterials in this field.

摘要

钼基层状纳米结构是具有优异特性和非常有前途的电化学性能的二维(2D)纳米材料。这些材料由钼(Mo)氧化物(MoO 和 MoO)、二硫化物(MoS、MoSe、MoTe)和碳化物(MoC)的纳米片组成,它们在用于储能和发电的电化学器件中得到了应用。在这篇专题论文中,我们介绍了这些基于钼的层状化合物的最相关特性及其作为电极材料在电化学传感器中的应用。特别是,我们综述了与合成方法、结构和电子特性以及相关电化学性能相关的方面,以及在电化学生物分子传感这一特定领域中的应用。本文描述了主要特点、现状、趋势和在生物医学传感应用方面的潜力,强调了钼基 2D 纳米材料在这一领域的独特性质。

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