Hou Xu, Pollard Travis P, Zhao Wenguang, He Xin, Ju Xiaokang, Wang Jun, Du Leilei, Paillard Elie, Lin Hai, Xu Kang, Borodin Oleg, Winter Martin, Li Jie
Helmholtz-Institute Muenster (HI MS), IEK-12, Forschungszentrum Juelich GmbH, Corrensstr. 46, 48149, Muenster, Germany.
Battery Science Branch, Sensor and Electron Devices Directorate, US Army Research Laboratory, Adelphi, MD, 20783, USA.
Small. 2022 Feb;18(5):e2104986. doi: 10.1002/smll.202104986. Epub 2021 Dec 1.
The formation of solid-electrolyte interphase (SEI) in "water-in-salt" electrolyte (WiSE) expands the electrochemical stability window of aqueous electrolytes beyond 3.0 V. However, the parasitic hydrogen evolution reaction that drives anode corrosion, cracking, and the subsequent reformation of SEI still occurs, compromising long-term cycling performance of the batteries. To improve cycling stability, an unsaturated monomer acrylamide (AM) is introduced as an electrolyte additive, whose presence in WiSE reduces its viscosity and improves ionic conductivity. Upon charging, AM electropolymerizes into polyacrylamide, as confirmed both experimentally and computationally. The in situ polymer constitutes effective protection layers at both anode and cathode surfaces, and enables LiMn O ||L-TiO full cells with high specific capacity (157 mAh g at 1 C), long-term cycling stability (80% capacity retention within 200 cycles at 1 C), and high rate capability (79 mAh g at 30 C). The in situ electropolymerization found in this work provides an alternative and highly effective strategy to design protective interphases at the negative and positive electrodes for high-voltage aqueous batteries of lithium-ion or beyond.
“盐包水”电解质(WiSE)中固体电解质界面(SEI)的形成将水系电解质的电化学稳定窗口扩展到了3.0 V以上。然而,驱动阳极腐蚀、开裂以及随后SEI重新形成的寄生析氢反应仍然会发生,这损害了电池的长期循环性能。为了提高循环稳定性,引入了不饱和单体丙烯酰胺(AM)作为电解质添加剂,其在WiSE中的存在降低了其粘度并提高了离子电导率。充电时,AM会电聚合为聚丙烯酰胺,这一点已通过实验和计算得到证实。原位聚合物在阳极和阴极表面均构成了有效的保护层,并使LiMn O ||L-TiO全电池具有高比容量(1 C下为157 mAh g)、长期循环稳定性(1 C下200次循环内容量保持率为80%)以及高倍率性能(30 C下为79 mAh g)。这项工作中发现的原位电聚合为设计用于锂离子或更高电压水系电池的正负电极保护界面提供了一种替代且高效的策略。