Computational and experimental characterization of a pyrrolidinium-based ionic liquid for electrolyte applications

被引:21
|
作者
Torabifard, Hedieh [1 ]
Reed, Luke [2 ]
Berry, Matthew T. [3 ]
Hein, Jason E. [3 ]
Menke, Erik [2 ]
Cisneros, G. Andres [4 ]
机构
[1] Wayne State Univ, Dept Chem, Detroit, MI 48202 USA
[2] Univ Calif Merced, Dept Chem & Chem Biol, Merced, CA 95343 USA
[3] Univ British Columbia, Dept Chem, Vancouver, BC V6T 1Z1, Canada
[4] Univ North Texas, Dept Chem, Denton, TX 76203 USA
来源
JOURNAL OF CHEMICAL PHYSICS | 2017年 / 147卷 / 16期
关键词
PARTICLE MESH EWALD; ATOM FORCE-FIELD; MOLECULAR-DYNAMICS; TRANSPORT-PROPERTIES; WATER; SIMULATIONS; MODEL;
D O I
10.1063/1.5004680
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The development of Li-ion batteries for energy storage has received significant attention. The synthesis and characterization of electrolytes in these batteries are an important component of this development. Ionic liquids (ILs) have been proposed as possible electrolytes in these devices. Thus, the accurate determination of thermophysical properties for these solvents becomes important for determining their applicability as electrolytes. In this contribution, we present the synthesis and experimental/computational characterization of thermodynamic and transport properties of a pyrrolidinium based ionic liquid as a first step to investigate the possible applicability of this class of ILs for Li-ion batteries. A quantum mechanical-based force field with many-body polarizable interactions has been developed for the simulation of spirocyclic pyrrolidinium, [sPyr(+)], with BF4- and Li+. Molecular dynamics calculations employing intra-molecular polarization predicted larger heat of vaporization and self-diffusion coefficients and smaller densities in comparison with the model without intra-molecular polarization, indicating that the inclusion of this term can significantly effect the inter-ionic interactions. The calculated properties are in good agreement with available experimental data for similar IL pairs and isothermal titration calorimetry data for [sPyr(+)][BF4-]. Published by AIP Publishing.
引用
收藏
页数:9
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