Wu Yu, Liu Yuan, Feng Xuning, Ma Zhuang, Xu Xiaodong, Ren Dongsheng, Han Xuebing, Li Yalun, Lu Languang, Wang Li, He Xiangming, Ouyang Minggao
School of Materials Science and Engineering, Beijing Institute of Technology, Beijing, 100081, China.
National Key Laboratory of Science and Technology on Materials under Shock and Impact, Beijing Institute of Technology, Beijing, 100081, China.
Adv Sci (Weinh). 2024 Jun;11(22):e2400600. doi: 10.1002/advs.202400600. Epub 2024 Apr 6.
With the electrochemical performance of batteries approaching the bottleneck gradually, it is increasingly urgent to solve the safety issue. Herein, all-in-one strategy is ingeniously developed to design smart, safe, and simple (3S) practical pouch-type LiNiCoMnO||Graphite@SiO (NCM811||Gr@SiO) cell, taking full advantage of liquid and solid-state electrolytes. Even under the harsh thermal abuse and high voltage condition (100 °C, 3-4.5 V), the pouch-type 3S NCM811||Gr@SiO cell can present superior capacity retention of 84.6% after 250 cycles (based pouch cell: 47.8% after 250 cycles). More surprisingly, the designed 3S NCM811||Gr@SiO cell can efficiently improve self-generated heat T by 45 °C, increase TR triggering temperature T by 40 °C, and decrease the TR highest T by 118 °C. These superior electrochemical and safety performances of practical 3S pouch-type cells are attributed to the robust and stable anion-induced electrode-electrolyte interphases and local solid-state electrolyte protection layer. All the fundamental findings break the conventional battery design guidelines and open up a new direction to develop practical high-performance batteries.
随着电池的电化学性能逐渐接近瓶颈,解决安全问题变得越来越紧迫。在此,巧妙地开发了一体化策略来设计智能、安全且简单(3S)的实用软包型LiNiCoMnO||石墨@二氧化硅(NCM811||Gr@SiO)电池,充分利用液态和固态电解质。即使在苛刻的热滥用和高电压条件(100°C,3 - 4.5V)下,软包型3S NCM811||Gr@SiO电池在250次循环后仍能呈现出84.6%的优异容量保持率(基于软包电池:250次循环后为47.8%)。更令人惊讶的是,所设计的3S NCM811||Gr@SiO电池能够将自热温度T有效提高45°C,将热失控触发温度T提高40°C,并将热失控最高温度T降低118°C。实用3S软包型电池的这些优异电化学和安全性能归因于坚固且稳定的阴离子诱导电极 - 电解质界面和局部固态电解质保护层。所有这些基础研究结果打破了传统电池设计准则,为开发实用的高性能电池开辟了新方向。