镍基金属有机骨架在电化学传感中的应用与改性

Fang Wang , Jinliang Hu , Yi Peng , Xiaohui Wu , Huaiguo Xue , Huan Pang
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引用次数: 6

摘要

金属有机骨架(MOFs)是一种多孔材料,具有比表面积大、配位类型和配位模式多样、形态和特性多样、适应性强等特点。MOFs由于其吸引人的结构和广泛应用的潜力,最近引起了人们的极大兴趣。镍基MOFs具有优异的特性,包括高灵敏度、低检测极限和稳健的稳定性,在电化学传感中具有许多优点。然而,纯镍基MOFs的弱导电性限制了其电化学应用。为了提高纯镍基MOFs的电化学传感性能,有必要进一步改善其特性并提高其电导率。本文介绍了纯镍基MOFs的三种制备方法,并详细介绍了纯Ni基MOFs.在电化学传感应用中的最新进展。此外,还介绍了如何通过三种方式调整纯镍基MOFs以改善其电化学特性。在这些工艺的介绍中,还描述了所制备的纯或改性的镍基MOF的结构和形貌。预计这项工作可能会为这一新兴领域镍基MOFs材料的未来研究提供一些扩展技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application and modification of nickel-based metal-organic frameworks in electrochemical sensing

Metal-organic frameworks (MOFs) are porous materials, which possess a large specific surface area, various coordination types and modes, and versatile and adaptable morphologies and characteristics. MOFs have drawn much interest recently because of their appealing structure and potential for extensive use. With excellent characteristics, including high sensitivity, a low detection limit, and robust stability, nickel (Ni)-based MOFs have several benefits in electrochemical sensing. However, the weak conductivity of pure Ni-based MOFs limits their electrochemical applications. It is essential to further improve the characteristics and enhance the electrical conductivity of pure Ni-based MOFs aiming at enhancing their performance in electrochemical sensing. Herein, the three preparation methods of pure Ni-based MOFs are introduced, then the most recent advancements of pure Ni-based MOFs in electrochemical sensing applications are detailed in this work. In addition, it described how to adapt pure Ni-based MOFs to improve their electrochemical characteristics in three ways. In the introduction of these processes, the structures and morphologies of the prepared pure or modified Ni-based MOF are also described. It is envisaged that this work may give some extending techniques for future research of Ni-based MOFs materials in this burgeoning sector.

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