Chen Kean, Shen Xiaohui, Luo Laibing, Chen Hui, Cao Ruoyu, Feng Xiangming, Chen Weihua, Fang Yongjin, Cao Yuliang
College of Chemistry and Molecular Sciences, Hubei Key Laboratory of Electrochemical Power Sources, Wuhan University, Wuhan, 430072, China.
College of Chemistry and Molecular Engineering, Zhengzhou University, Zhengzhou, 450001, China.
Angew Chem Int Ed Engl. 2023 Nov 20;62(47):e202312373. doi: 10.1002/anie.202312373. Epub 2023 Oct 19.
The solvation structure of Li plays a significant role in determining the physicochemical properties of electrolytes. However, to date, there is still no clear definition of the solvating power of different electrolyte solvents, and even the solvents that preferentially participate in the solvation structure remain controversial. In this study, we comprehensively discuss the solvating power and solvation process of Li ions using both experimental characterizations and theoretical calculations. Our findings reveal that the solvating power is dependent on the strength of the Li -solvent (ion-dipole) interaction. Additionally, we uncover that the anions tend to enter the solvation sheath in most electrolyte systems through Li -anion (ion-ion) interaction, which is weakened by the shielding effect of solvents. The competition between the Li -solvent and Li -anion interactions ultimately determines the final solvation structures. This insight into the fundamental understanding of the solvation structure of Li provides inspiration for the design of multifunctional mixed-solvent electrolytes for advanced batteries.
锂的溶剂化结构在决定电解质的物理化学性质方面起着重要作用。然而,迄今为止,对于不同电解质溶剂的溶剂化能力仍没有明确的定义,甚至优先参与溶剂化结构的溶剂也存在争议。在本研究中,我们使用实验表征和理论计算全面讨论了锂离子的溶剂化能力和溶剂化过程。我们的研究结果表明,溶剂化能力取决于锂 - 溶剂(离子 - 偶极)相互作用的强度。此外,我们发现,在大多数电解质体系中,阴离子倾向于通过锂 - 阴离子(离子 - 离子)相互作用进入溶剂化鞘层,而这种相互作用会因溶剂的屏蔽效应而减弱。锂 - 溶剂和锂 - 阴离子相互作用之间的竞争最终决定了最终的溶剂化结构。这种对锂溶剂化结构基本理解的见解为先进电池多功能混合溶剂电解质的设计提供了灵感。