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二维 MoSe 薄片嵌入在高表面积石墨烯杂化体中,用于 NADH 的安培检测。

2D MoSe sheets embedded over a high surface graphene hybrid for the amperometric detection of NADH.

机构信息

Electrodics and Electrocatalysis (EEC) Biosensor Division, CSIR- Central Electrochemical Research Institute (CSIR-CECRI), Karaikudi, Tamilnadu, 630003, India.

出版信息

Mikrochim Acta. 2018 Aug 11;185(9):411. doi: 10.1007/s00604-018-2946-8.

Abstract

Delaminated 2D sheets of MoSe were prepared by liquid phase exfoliation and were embedded over high surface area hydrogen exfoliated graphene (HEG) by a simple technique. The MoSe/HEG hybrid composite exhibits fast heterogeneous electron-transfer (HET) and a high electrochemically active surface area compared to only HEG. When employed for detection of NADH, it exhibits electrooxidation at a low potential of 150 mV (vs. Ag/AgCl) with high sensitivity of 0.0814 µA⋅µM⋅cm over a wide linear range (1-280 μM), good selectivity, and a low limit of detection (1 μM). The good performance of the composite is due to the homogeneously dispersed 2D sheets of MoSe over large-surface area HEG, which retain its electrochemical activity, prevents restacking, and acts as an electron transfer channel. On the basis of the above analytical requirements and its easy synthesis, the hybrid composite represents a robust material for electrochemical sensing. Graphical abstract Schematic of the 2D MoSe/HEG composite for electrochemical detection of NADH.

摘要

通过液相剥离制备了分层的二维 MoSe 片,并通过简单的技术将其嵌入具有高比表面积的氢剥离石墨烯(HEG)中。与仅 HEG 相比,MoSe/HEG 杂化复合材料表现出快速的非均相电子转移(HET)和高电化学活性表面积。当用于检测 NADH 时,它在低电位 150 mV(相对于 Ag/AgCl)下表现出电氧化,在 1-280 μM 的宽线性范围内具有 0.0814 μA⋅μM⋅cm 的高灵敏度、良好的选择性和低检测限(1 μM)。复合材料的良好性能归因于均匀分散在大表面积 HEG 上的二维 MoSe 片,其保留了其电化学活性,防止了堆积,并作为电子转移通道。基于上述分析要求及其易于合成,该杂化复合材料代表了用于电化学传感的一种稳健材料。

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