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Metal-organic frameworks for electrochemical sensors of neurotransmitters

机译:神经递质电化学传感器的金属有机框架

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Neurotransmitters (NTs) control many behavioral and physiological functions in central and peripheral nervous system, and their detection is of great importance to disease diagnosis and environmental monitoring. Electrochemical sensors have been popular and convenient methods for detection of NTs that are electroactive or can be coupled with electroactive reactions. Metal-organic frameworks (MOFs), constructed by organic ligands connecting metal-based nodes, are promising candidates for electrochemical sensors due to their large surface areas, hybrid structures, tailorable functional sites, and variable catalytic activity. This article gives an overview of the general aspects of MOFs for electrochemical assays of NTs and focused on the state-of-art of the sensors based on MOFs and the composites of MOFs with various materials (mainly carbon-based materials, organic polymers and metal or metal oxide nanoparticle). The use of MOF-derived materials as electrode modifiers is also included. (C) 2021 Elsevier B.V. All rights reserved.
机译:神经递质(NTS)控制中部和外周神经系统中的许多行为和生理功能,它们的检测对于疾病诊断和环境监测非常重要。电化学传感器已经流行且方便地检测电活性或可以与电活性反应偶联的方法。由连接金属基节点的有机配体构成的金属有机框架(MOF)是由于其大表面积,杂交结构,可占状功能位点和可变催化活性的电化学传感器的候选者。本文概述了用于NTS的电化学测定的MOFS的一般方面,并基于MOF和具有各种材料的MOF的复合材料(主要是碳基材料,有机聚合物和金属的材料或金属氧化物纳米颗粒)。还包括使用MOF衍生材料作为电极改性剂。 (c)2021 elestvier b.v.保留所有权利。

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