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由高度兼容的极性共溶剂实现的稳定高性能锌离子电池。

A Stable High-Performance Zn-Ion Batteries Enabled by Highly Compatible Polar Co-Solvent.

作者信息

Yang Shuo, Wu Guangpeng, Zhang Jing, Guo Yuning, Xue Kui, Zhang Yongqi, Zhu Yuanmin, Li Tao, Zhang Xiaofeng, Zhou Liujiang

机构信息

School of Physics, State Key Laboratory of Electronic Thin Films and Integrated Devices, University of Electronic Science and Technology of China, Chengdu, 611731, China.

Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu, 611731, China.

出版信息

Adv Sci (Weinh). 2024 Sep;11(35):e2403513. doi: 10.1002/advs.202403513. Epub 2024 Jul 17.

Abstract

Uncontrollable growth of Zn dendrites, irreversible dissolution of cathode material and solidification of aqueous electrolyte at low temperatures severely restrict the development of aqueous Zn-ion batteries. In this work, 2,2,2-trifluoroethanol (TFEA) with a volume fraction of 50% as a highly compatible polar-solvent is introduced to 1.3 M Zn(CFSO) aqueous electrolyte, achieving stable high-performance Zn-ion batteries. Massive theoretical calculations and characterization analysis demonstrate that TFEA weakens the tip effect of Zn anode and restrains the growth of Zn dendrites due to electrostatic adsorption and coordinate with HO to disrupt the hydrogen bonding network in water. Furthermore, TFEA increases the wettability of the cathode and alleviates the dissolution of VO, thus improving the capacity of the full battery. Based on those positive effects of TFEA on Zn anode, VO cathode, and aqueous electrolyte, the Zn//Zn symmetric cell delivers a long cycle-life of 782 h at 5 mA cm and 2 mA h cm. The full battery still declares an initial capacity of 116.78 mA h g, and persists 87.73% capacity in 2000 cycles at -25 °C. This work presents an effective strategy for fully compatible co-solvent to promote the stability of Zn anode, VO cathode and aqueous electrolyte for high-performance Zn-ion batteries.

摘要

锌枝晶的不可控生长、正极材料的不可逆溶解以及低温下水性电解质的凝固严重限制了水系锌离子电池的发展。在这项工作中,将体积分数为50%的2,2,2-三氟乙醇(TFEA)作为高度相容的极性溶剂引入到1.3 M Zn(CFSO)水性电解质中,实现了稳定的高性能锌离子电池。大量的理论计算和表征分析表明,TFEA减弱了锌阳极的尖端效应,并由于静电吸附以及与HO配位破坏水中的氢键网络而抑制了锌枝晶的生长。此外,TFEA提高了正极的润湿性并减轻了VO的溶解,从而提高了全电池的容量。基于TFEA对锌阳极、VO正极和水性电解质的这些积极作用,Zn//Zn对称电池在5 mA cm和2 mA h cm下具有782 h的长循环寿命。全电池在-25°C下2000次循环中仍具有116.78 mA h g的初始容量,并保持87.73%的容量。这项工作提出了一种有效的策略,即使用完全相容的共溶剂来促进锌阳极、VO正极和水性电解质的稳定性,以实现高性能锌离子电池。

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