Synthesis, Analysis and Thermoelectrochemical Applications of Ionic Liquids

Fatma Sarf
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Abstract

New materials, which are eco-friendly and have unusual characters, are so attractive with the increasing demand and harmful pollutants amount all over the world. As a solvent, non-evaporate ionic liquids (ILs) have recently captured notable interest due to their magnifical properties. They have been used for distinct purposes such as electrochemistry, separation, lubrication, catalyst, and energy applications. Adding functional groups and/or anion or cation tunability can ensure improved efficiency ILs depends on the application type. The preset paper is primarily focused on the ionic liquids (IL) synthesis, development of functionalized ionic liquids, and their purification process. It also provides a review of the use of ionic liquids as electrolytes in the thermoelectrochemical cells due to the immediate necessity in areas ranging from waste heat conversion to electricity in modern life. Because ionic liquids have hazardous environmental effects, incur high costs, and require complex synthesis and purification process, all must be under control, recovered and optimized. Therefore, understanding their nature has become more important. Additionally, viscosity and conductivity of ILs are an obstacle in experimental studies; besides, the use of redox couples in IL electrolytes must be improved to use in thermoelectrochemical cell applications.
离子液体的合成、分析及热电化学应用
随着世界范围内对环保材料的需求和有害污染物的增加,具有独特特性的新材料越来越受到人们的青睐。作为一种溶剂,非蒸发离子液体(ILs)由于其优异的性能近年来引起了人们的极大兴趣。它们已被用于不同的目的,如电化学、分离、润滑、催化剂和能源应用。添加官能团和/或阴离子或阳离子的可调性可以确保提高效率。这取决于应用程序类型。本文主要介绍了离子液体的合成、功能化离子液体的发展及其纯化工艺。由于在现代生活中从废热转换到电力等领域的迫切需要,离子液体作为电解质在热电化学电池中的应用也得到了综述。由于离子液体对环境影响大,成本高,合成和纯化过程复杂,必须对其进行控制、回收和优化。因此,了解它们的本质变得更加重要。此外,il的粘度和导电性是实验研究中的一个障碍;此外,氧化还原偶在IL电解质中的应用必须得到改进,才能在热电化学电池中得到应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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