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拉曼光谱和密度泛函理论模型研究锂咪唑电解液中的离子-离子和离子-溶剂相互作用。

Ion-ion and ion-solvent interactions in lithium imidazolide electrolytes studied by Raman spectroscopy and DFT models.

机构信息

Department of Applied Physics, Chalmers University of Technology, Göteborg, Sweden.

出版信息

Phys Chem Chem Phys. 2011 Jun 21;13(23):11136-47. doi: 10.1039/c1cp20063a. Epub 2011 May 12.

DOI:10.1039/c1cp20063a
PMID:21562676
Abstract

Molecular level interactions are of crucial importance for the transport properties and overall performance of ion conducting electrolytes. In this work we explore ion-ion and ion-solvent interactions in liquid and solid polymer electrolytes of lithium 4,5-dicyano-(2-trifluoromethyl)imidazolide (LiTDI)-a promising salt for lithium battery applications-using Raman spectroscopy and density functional theory calculations. High concentrations of ion associates are found in LiTDI:acetonitrile electrolytes, the vibrational signatures of which are transferable to PEO-based LiTDI electrolytes. The origins of the spectroscopic changes are interpreted by comparing experimental spectra with simulated Raman spectra of model structures. Simple ion pair models in vacuum identify the imidazole nitrogen atom of the TDI anion to be the most important coordination site for Li(+), however, including implicit or explicit solvent effects lead to qualitative changes in the coordination geometry and improved correlation of experimental and simulated Raman spectra. To model larger aggregates, solvent effects are found to be crucial, and we finally suggest possible triplet and dimer ionic structures in the investigated electrolytes. In addition, the effects of introducing water into the electrolytes-via a hydrate form of LiTDI-are discussed.

摘要

分子水平的相互作用对于离子导电电解质的传输性质和整体性能至关重要。在这项工作中,我们使用拉曼光谱和密度泛函理论计算研究了锂离子 4,5-二氰基-(2-三氟甲基)咪唑𬭩(LiTDI)-一种有前途的锂电池应用盐-在液体和固体聚合物电解质中的离子-离子和离子-溶剂相互作用。在 LiTDI:乙腈电解质中发现了高浓度的离子缔合物,其振动特征可转移到基于 PEO 的 LiTDI 电解质中。通过将实验光谱与模型结构的模拟拉曼光谱进行比较,解释了光谱变化的起源。在真空中的简单离子对模型确定 TDI 阴离子的咪唑氮原子是 Li(+)的最重要配位位点,然而,包括隐式或显式溶剂效应会导致配位几何形状发生定性变化,并改善实验和模拟拉曼光谱的相关性。为了模拟更大的聚集体,溶剂效应被发现是至关重要的,我们最终提出了在研究电解质中可能的三聚体和二聚体离子结构。此外,还讨论了通过 LiTDI 的水合物形式将水引入电解质中的影响。

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