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不对称阴离子锌盐衍生的固体电解质界面助力长寿命水系锌溴电池。

Asymmetric Anion Zinc Salt Derived Solid Electrolyte Interphase Enabled Long-Lifespan Aqueous Zinc Bromine Batteries.

作者信息

Chen Shengmei, Li Shimei, Ma Longtao, Ying Yiran, Wu Zhuoxi, Huang Haitao, Zhi Chunyi

机构信息

Department of Materials Science and Engineering, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong, 999077, P. R. China.

Hong Kong Center for Cerebro-Cardiovascular Health Engineering (COCHE), 999077, Shatin, NT, HKSAR, China.

出版信息

Angew Chem Int Ed Engl. 2024 Mar 11;63(11):e202319125. doi: 10.1002/anie.202319125. Epub 2024 Feb 6.

Abstract

Organic additives with high-reduction potentials are generally applied in aqueous electrolytes to stabilize the Zn anode, while compromise safety and environmental compatibility. Highly concentrated water-in-salt electrolytes have been proposed to realize the high reversibility of Zn plating/stripping; however, their high cost and viscosity hinder their practical applications. Therefore, exploring low-concentration Zn salts, that can be used directly to stabilize Zn anodes, is of primary importance. Herein, we developed an asymmetric anion group, bi(difluoromethanesulfonyl)(trifluoromethanesulfonyl)imide (DFTFSI )-based novel zinc salt, Zn(DFTFSI) , to obtain a high ionic conductivity and a highly stable dendrite-free Zn anode. Experimental tests and theoretical calculations verified that DFTFSI in the Zn solvation sheath and inner Helmholtz plane would be preferentially reduced to construct layer-structured SEI films, inhibiting hydrogen evolution and side reactions. Consequently, the Zn Zn symmetric cell with 1M Zn(DFTFSI) aqueous electrolyte delivers an ultralong cycle life for >2500 h outperforming many other conventional Zn salt electrolytes. The Zn Br battery also exhibits a long lifespan over 1200 cycles at 99.8 % Coulombic efficiency with a high capacity retention of 92.5 %. Furthermore, this outstanding performance translates well to a high-areal-capacity Zn Br battery (5.6 mAh ⋅ cm ), cycling over 320 cycles with 95.3 % initial capacity retained.

摘要

具有高还原电位的有机添加剂通常应用于水性电解质中以稳定锌阳极,但会损害安全性和环境兼容性。人们已提出高浓度的盐包水电解质来实现锌电镀/剥离的高可逆性;然而,它们的高成本和高粘度阻碍了其实际应用。因此,探索可直接用于稳定锌阳极的低浓度锌盐至关重要。在此,我们开发了一种基于不对称阴离子基团双(二氟甲磺酰基)(三氟甲磺酰基)亚胺(DFTFSI)的新型锌盐Zn(DFTFSI)₂,以获得高离子电导率和高度稳定的无枝晶锌阳极。实验测试和理论计算证实,锌溶剂化鞘层和内亥姆霍兹平面中的DFTFSI会优先被还原,以构建层状结构的固态电解质界面(SEI)膜,抑制析氢和副反应。因此,采用1M Zn(DFTFSI)₂水性电解质的锌-锌对称电池具有超过2500小时的超长循环寿命,优于许多其他传统锌盐电解质。锌-溴电池在约99.8%的库仑效率下也表现出超过1200次循环的长寿命,容量保持率高达92.5%。此外,这种出色的性能很好地转化为了高面积容量的锌-溴电池(~5.6 mAh⋅cm⁻²),在保持95.3%初始容量的情况下循环超过320次。

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