离子液体在多糖电解质中的应用新动向综述

H. Ornaghi, E. F. Kerche, R. Neves, F. Monticeli, Lucas Dall Agnol
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引用次数: 2

摘要

多糖是由长链单糖组成,主要功能是促进植物和动物的能量和结构储备。它们可以作为电解质的基础,使用离子液体(ILs)作为溶剂基础。电解质的研究是一个新兴的领域,因为它们被应用于二次电池、燃料电池、太阳能电池、超级电容器和化学传感器。它们在极端条件下稳定运行,保持其高热稳定性。此外,与传统电解质相比,其低成本和环境安全的特点引起了科学领域的广泛关注。il完全由离子组成,有可能用作溶剂。作为电解质,il是环保的,它们与多糖结合使用可以产生协同效应。在本研究中,通过对三个数据库的检索,对2014年至2022年发表的关于il和多糖的所有论文进行了系统回顾。由于发现的结果很多,所以只考虑了关于电解质的论文,并描述了主要的发现。这项研究可以很容易地识别出与il和多糖有关的最相关的研究领域,以及文献中有待探索的主要空白。
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A Systematic Review of New Trends in Ionic Liquids Applied to Electrolytes on Polysaccharides
Polysaccharides are formed by a long chain of monosaccharides, with the main function of promoting energetic and structural reserves for plants and animals. They can be applied as a base of electrolytes, using ionic liquids (ILs) as a solvent base. The study of electrolytes is an emerging field, as they are applied as secondary batteries, fuel cells, solar cells, supercapacitors and chemical sensors. They operate stably under extreme conditions, maintaining their high thermal stability. Furthermore, their low cost and environmentally safe character, compared to conventional electrolytes, have attracted considerable attention in the scientific field. ILs are composed entirely of ions and could be potentially applied as solvents. As electrolytes, ILs are environmentally friendly, and their use in combination with polysaccharides leads to a synergic effect. In the present study, a systematic review was performed of all papers published from 2014 to 2022 regarding ILs and polysaccharides through a search of three databases. Due to the large number of results found, only papers about electrolytes were considered and the main findings described. This study allows for easy identification of the most relevant fields of study with respect to ILs and polysaccharides, as well as the main gaps to be explored in the literature.
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