分析四氟硼酸三乙基甲基铵在纯和水乙炔深共熔溶剂中的溶剂化和电化学行为:实验和计算方法。

IF 2.9 2区 化学 Q3 CHEMISTRY, PHYSICAL
Renuka Sharma, , , Akshay Sharma, , and , Ramesh Chand Thakur*, 
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引用次数: 0

摘要

人口的增长导致了全球能源需求的增加。高效的能量存储方法和设备是当前的需求。深共晶溶剂(DESs)只有20年的历史,已经成为储能装置中电解质的合适候选者。这些溶剂具有成本效益和环境友好性,可以通过多种方式设计以满足目标应用。为了使这些溶剂更加环保和廉价,可以探索水作为添加剂。在这方面,电化学和热物理性质,如表观和部分摩尔体积,等熵可压缩性,以及表观和部分摩尔等熵可压缩性,由三乙基甲基四氟硼酸铵(TEMABF4)组成的溶液在纯和水溶液DES (ethaline)中使用实验和计算技术。在分析了所有溶剂体系的热物性参数后,发现四烷基盐具有破坏结构的作用。当从纯DES转变为水溶液时,在保持纯DES和aq. DES的电化学窗口分别为2.3 V和1.7 V的情况下,观察到离子电导率大幅上升,粘度值大幅下降。计算研究(RDG, MEP和NCI)和FTIR结果与实验结果相补充,表明水的加入增加了动力学稳定性,证实了水和DES之间存在显著的氢键,并增加了水中离子组分的溶剂化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Analyzing the Solvation and Electrochemical Behavior of Triethylmethylammonium Tetrafluoroborate in Pure and Aqueous Ethaline Deep Eutectic Solvent: Experimental and Computational Approaches

Analyzing the Solvation and Electrochemical Behavior of Triethylmethylammonium Tetrafluoroborate in Pure and Aqueous Ethaline Deep Eutectic Solvent: Experimental and Computational Approaches

The growing population has led to an increase in global energy demands. Efficient energy storage methods and devices are the need of the hour. Deep eutectic solvents (DESs) being only two decades old have presented themselves as suitable candidates for electrolytes in energy storage devices. These solvents are cost-effective and environmentally friendly and can be designed in numerous ways to meet the targeted applications. In order to make these solvents more environmentally friendly and cheap, water as an additive can be explored. In this regard, electrochemical and thermophysical properties like apparent and partial molal volumes, isentropic compressibility, and apparent and partial molal isentropic compressibility of solutions comprising triethylmethylammonium tetrafluoroborate (TEMABF4) in pure and aqueous DES (ethaline) were determined using experimental and computational techniques. The tetra-alkyl salt was found to act as a structure breaker after the analysis of thermophysical parameters in all of the solvent systems under consideration. Upon moving from pure to aqueous DES systems, substantial rise in the ionic conductivity and drop in the viscosity values were observed while maintaining an electrochemical window of 2.3 and 1.7 V for pure DES and aq. DES, respectively. Computational studies (RDG, MEP, and NCI) and FTIR findings complemented the experimental results and showed increased kinetic stability upon addition of water, confirming significant H-bonding between water and DES and increased solvation of ionic components in water.

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来源期刊
CiteScore
5.80
自引率
9.10%
发文量
965
审稿时长
1.6 months
期刊介绍: An essential criterion for acceptance of research articles in the journal is that they provide new physical insight. Please refer to the New Physical Insights virtual issue on what constitutes new physical insight. Manuscripts that are essentially reporting data or applications of data are, in general, not suitable for publication in JPC B.
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