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Nanostructured materials in potentiometry

机译:电位计中的纳米结构材料

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Potentiometry is a very simple electrochemical technique with extraordinary analytical capabilities. It is also well known that nanostructured materials display properties which they do not show in the bulk phase. The combination of the two fields of potentiometry and nanomaterials is therefore a promising area of research and development. In this report, we explain the fundamentals of potentiometric devices that incorporate nanostructured materials and we highlight the advantages and drawbacks of combining nanomaterials and potentiometry. The paper provides an overview of the role of nanostructured materials in the two commonest potentiometric sensors: field-effect transistors and ion-selective electrodes. Additionally, we provide a few recent examples of new potentiometric sensors that are based on receptors immobilized directly onto the nanostructured material surface. Moreover, we summarize the use of potentiometry to analyze processes involving nanostructured materials and the prospects that the use of nanopores offer to potentiometry. Finally, we discuss several difficulties that currently hinder developments in the field and some future trends that will extend potentiometry into new analytical areas such as biology and medicine.
机译:电位计是一种非常简单的电化学技术,具有出色的分析能力。还众所周知,纳米结构材料显示出其在本体相中未显示的特性。因此,电位计和纳米材料这两个领域的结合是一个有前途的研究和开发领域。在本报告中,我们解释了结合了纳米结构材料的电位器的基本原理,并重点介绍了将纳米材料与电位器结合使用的优缺点。本文概述了纳米结构材料在两个最常见的电位传感器中的作用:场效应晶体管和离子选择电极。此外,我们提供了一些新的电位计传感器的最新示例,这些传感器基于直接固定在纳米结构材料表面上的受体。此外,我们总结了电位计的使用来分析涉及纳米结构材料的过程以及使用纳米孔为电位计提供的前景。最后,我们讨论了目前阻碍该领域发展的一些困难以及将电位计扩展到生物学和医学等新的分析领域的一些未来趋势。

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