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Room temperature all-solid-state lithium batteries based on a soluble organic cage ionic conductor.

Jing LiJizhen QiFeng JinFengrui ZhangLei ZhengLingfei TangRong HuangJingjing XuHongwei ChenMing LiuYejun QiuAndrew I CooperYanbin ShenLiwei Chen
Published in: Nature communications (2022)
All solid-state lithium batteries (SSLBs) are poised to have higher energy density and better safety than current liquid-based Li-ion batteries, but a central requirement is effective ionic conduction pathways throughout the entire cell. Here we develop a catholyte based on an emerging class of porous materials, porous organic cages (POCs). A key feature of these Li + conducting POCs is their solution-processibility. They can be dissolved in a cathode slurry, which allows the fabrication of solid-state cathodes using the conventional slurry coating method. These Li + conducting cages recrystallize and grow on the surface of the cathode particles during the coating process and are therefore dispersed uniformly in the slurry-coated cathodes to form a highly effective ion-conducting network. This catholyte is shown to be compatible with cathode active materials such as LiFePO 4 , LiCoO 2 and LiNi 0.5 Co 0.2 Mn 0.3 O 2 , and results in SSLBs with decent electrochemical performance at room temperature.
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