Liu Zhishan, Hou Wentao, Tian Haoran, Qiu Qian, Ullah Irfan, Qiu Shen, Sun Wei, Yu Qian, Yuan Jinliang, Xia Lan, Wu Xianyong
Faculty of Maritime and Transportation, Ningbo University, No. 169 Qixing South Road, Ningbo Meishan Free Trade Zone, Ningbo, Zhejiang, 315832, P. R. China.
Department of Chemistry, University of Puerto Rico-Rio Piedras Campus, San Juan, Puerto Rico, 00925-2537, United States.
Angew Chem Int Ed Engl. 2024 May 6;63(19):e202400110. doi: 10.1002/anie.202400110. Epub 2024 Apr 5.
The electrolyte concentration not only impacts the battery performance but also affects the battery cost and manufacturing. Currently, most studies focus on high-concentration (>3 M) or localized high-concentration electrolytes (~1 M); however, the expensive lithium salt imposes a major concern. Most recently, ultralow concentration electrolytes (<0.3 M) have emerged as intriguing alternatives for battery applications, which feature low cost, low viscosity, and extreme-temperature operation. However, at such an early development stage, many works are urgently needed to further understand the electrolyte properties. Herein, we introduce an ultralow concentration electrolyte of 2 wt % (0.16 M) lithium difluoro(oxalato)borate (LiDFOB) in standard carbonate solvents. This electrolyte exhibits a record-low salt/solvent mass ratio reported to date, thus pointing to a superior low cost. Furthermore, this electrolyte is highly compatible with commercial Li-ion materials, forming stable and inorganic-rich interphases on the lithium cobalt oxide (LiCoO) cathode and graphite anode. Consequently, the LiCoO-graphite full cell demonstrates excellent cycling performance. Besides, this electrolyte is moisture-resistant and effectively suppresses the generation of hydrogen fluoride, which will markedly facilitate the battery assembly and recycling process under ambient conditions.
电解质浓度不仅会影响电池性能,还会影响电池成本和制造。目前,大多数研究集中在高浓度(>3 M)或局部高浓度电解质(~1 M);然而,昂贵的锂盐是一个主要问题。最近,超低浓度电解质(<0.3 M)已成为电池应用中引人关注的替代方案,其特点是成本低、粘度低和可在极端温度下运行。然而,在如此早期的发展阶段,迫切需要开展许多工作来进一步了解电解质的性质。在此,我们介绍一种在标准碳酸酯溶剂中含有2 wt %(0.16 M)二氟草酸硼酸锂(LiDFOB)的超低浓度电解质。这种电解质呈现出迄今为止报道的创纪录的低盐/溶剂质量比,因此显示出卓越的低成本特性。此外,这种电解质与商用锂离子材料高度兼容,在钴酸锂(LiCoO)阴极和石墨阳极上形成稳定且富含无机物的界面。因此,LiCoO-石墨全电池展现出优异的循环性能。此外,这种电解质具有防潮性,能有效抑制氟化氢的产生,这将显著促进在环境条件下的电池组装和回收过程。