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具有均匀聚合物网络的聚醚基固体电解质:盐浓度对锂离子配位结构的影响。

Polyether-based solid electrolytes with a homogeneous polymer network: effect of the salt concentration on the Li-ion coordination structure.

作者信息

Ikeda Namie, Ishikawa Asumi, Fujii Kenta

机构信息

Graduate School of Sciences and Technology for Innovation, Yamaguchi University, 2-16-1 Tokiwadai, Ube, Yamaguchi 755-8611, Japan.

出版信息

Phys Chem Chem Phys. 2022 Apr 20;24(16):9626-9633. doi: 10.1039/d1cp05351e.

Abstract

We report a solid polymer electrolyte with an ideal polyether network that was synthesized by using tetra-functional poly(ethylene glycol) (TetraPEG) and lithium bis(trifluoromethanesulfonyl)amide (LiTFSA) salt. The solid TetraPEG electrolyte had few network defects (<5%) and exhibited high mechanical toughness by enduring approximately 11-fold elongation at a 1 : 10 ratio of Li salt to O atoms of PEG (Li/O). We found that the mechanical properties strongly depend on the Li/O ratio, which mainly contributes to the density of crosslinking points in the electrolyte. Raman spectroscopy and high-energy X-ray total scattering were used with all-atom molecular dynamics simulations to visualize the structural effects of Li-ion coordination in the TetraPEG network. At lower salt contents (Li/O = 1 : 10), Li ions were found to preferentially coordinate with O atoms rather than the TFSA anions to form crown ether-like Li-PEG complexes as ion pair-free species. With increasing salt content, the TFSA anions partially coordinated with Li ions through O atoms of TFSA (O) to afford contact ion pairs surrounded by both O and O atoms. Finally, the ion pairing enhanced mononuclear ion pairs as well as multinuclear ionic aggregates when more Li salt was added. This structural change in the Li-ion complexes was directly reflected by the ion-conducting properties of the electrolyte. The TetraPEG electrolyte composed of the ion pair-free Li species (Li/O = 1 : 10) exhibited higher ionic conductivity, and the conductivity gradually decreased with increasing salt content because of extensive ion pairing for both mononuclear contact ion pairs and multinuclear aggregates. Regarding the electrochemical properties, the optimum electrolyte composition to realize a reversible Li deposition/dissolution reaction for a negative electrode was found to be Li/O = 1 : 4.

摘要

我们报道了一种具有理想聚醚网络的固体聚合物电解质,它是通过使用四官能聚乙二醇(TetraPEG)和双(三氟甲磺酰)亚胺锂(LiTFSA)盐合成的。固体TetraPEG电解质几乎没有网络缺陷(<5%),并且在锂盐与PEG的O原子之比(Li/O)为1:10时,通过承受约11倍的伸长率表现出高机械韧性。我们发现机械性能强烈依赖于Li/O比,这主要影响电解质中交联点的密度。拉曼光谱和高能X射线全散射与全原子分子动力学模拟一起用于可视化TetraPEG网络中锂离子配位的结构效应。在较低盐含量(Li/O = 1:10)下,发现锂离子优先与O原子配位而不是TFSA阴离子,以形成无离子对的类冠醚Li-PEG配合物。随着盐含量的增加,TFSA阴离子通过TFSA的O原子(O)与锂离子部分配位,以提供被O和O原子包围的接触离子对。最后,当添加更多锂盐时,离子对增强了单核离子对以及多核离子聚集体。锂离子配合物的这种结构变化直接反映在电解质的离子传导性能上。由无离子对的Li物种(Li/O = 1:10)组成的TetraPEG电解质表现出更高的离子电导率,并且由于单核接触离子对和多核聚集体的广泛离子对作用,电导率随着盐含量的增加而逐渐降低。关于电化学性能,发现实现负极可逆锂沉积/溶解反应的最佳电解质组成是Li/O = 1:4。

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