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通过离子环境调控实现可控固体电解质界面用于稳定的锌离子电池

Controllable Solid Electrolyte Interphase by Ionic Environment Regulation for Stable Zn-Ion Battery.

作者信息

Liu Jingwen, Li Caixia, Zhang Kai, Zhang Shenghao, Zhang Chao, Yang Yu, Wang Lei

机构信息

State Key Laboratory Base of Eco-Chemical Engineering, International Science and Technology Cooperation Base of Eco-chemical Engineering and Green Manufacturing, Qingdao University of Science and Technology, Qingdao, 266042, P. R. China.

College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao, 266042, P. R. China.

出版信息

Small. 2024 May;20(19):e2309057. doi: 10.1002/smll.202309057. Epub 2023 Dec 10.

Abstract

Artificial solid electrolyte interphase in organic solutions is effective and facile for long-cycling aqueous zinc ion batteries. However, the specific effects on different ionic environments have not been thoroughly investigated. Herein, pyromellitic acid (PA) are employed as organic ligand to coordinate with Zn under various ionic environments. The connection between the ionic environment and reaction spontaneity is analyzed to provide insights into the reasons behind the effectiveness of the SEI layer and to characterize its protective impact on the zinc anode. Notably, the PA solution (pH4) lacking OH contributes to the formation of a dense and ultrathin SEI with Zn-PA coordination, preventing direct contact between the anode and electrolyte. Moreover, the presence of organic functional groups facilitates a uniform flux of Zn. These advantages enable stable cycling of the PA4-Zn symmetric cell at a current density of 3 mA cm for over 3500 h. The PA4-Zn//MVO full cell demonstrates excellent electrochemical reversibility. Investigating the influence of the ionic environment on SEI generation informs the development of novel SEI strategies.

摘要

有机溶液中的人工固态电解质界面对于长循环水系锌离子电池而言既有效又简便。然而,其对不同离子环境的具体影响尚未得到充分研究。在此,均苯四甲酸(PA)被用作有机配体,在各种离子环境下与锌配位。分析离子环境与反应自发性之间的联系,以深入了解SEI层有效性背后的原因,并表征其对锌负极的保护作用。值得注意的是,缺乏OH的PA溶液(pH4)有助于形成具有Zn-PA配位的致密超薄SEI,防止负极与电解质直接接触。此外,有机官能团的存在促进了锌的均匀通量。这些优势使得PA4-Zn对称电池在3 mA cm的电流密度下能够稳定循环超过3500小时。PA4-Zn//MVO全电池表现出优异的电化学可逆性。研究离子环境对SEI生成的影响为新型SEI策略的开发提供了依据。

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