电解质
化学
阴极
电池(电)
锂(药物)
离子电导率
有机自由基电池
锂电池
甲基丙烯酸酯
锂离子电池
氧化还原
醌
化学工程
磷酸钒锂电池
无机化学
电化学
聚合物
复合数
电极
离子键合
材料科学
聚合
离子
有机化学
复合材料
功率(物理)
医学
量子力学
物理化学
内分泌学
工程类
物理
作者
Zhiqiang Zhu,Meiling Hong,Dong‐Sheng Guo,Jifu Shi,Zhanliang Tao,Jun Chen
摘要
The cathode capacity of common lithium ion batteries (LIBs) using inorganic electrodes and liquid electrolytes must be further improved. Alternatively, all-solid-state lithium batteries comprising the electrode of organic compounds can offer much higher capacity. Herein, we successfully fabricated an all-solid-state lithium battery based on organic pillar[5]quinone (C35H20O10) cathode and composite polymer electrolyte (CPE). The poly(methacrylate) (PMA)/poly(ethylene glycol) (PEG)-LiClO4-3 wt % SiO2 CPE has an optimum ionic conductivity of 0.26 mS cm(-1) at room temperature. Furthermore, pillar[5]quinine cathode in all-solid-state battery rendered an average operation voltage of ∼2.6 V and a high initial capacity of 418 mAh g(-1) with a stable cyclability (94.7% capacity retention after 50 cycles at 0.2C rate) through the reversible redox reactions of enolate/quinonid carbonyl groups, showing favorable prospect for the device application with high capacity.
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