材料科学
吩噻嗪
小分子
阴极
电压
辍学(神经网络)
分子
化学工程
纳米技术
光化学
电气工程
有机化学
医学
化学
药理学
工程类
生物
计算机科学
机器学习
遗传学
作者
Yanxiang Gong,Weichao Zhang,Zhenjiang Liu,Manman Fang,Jie Yang,Yunsheng Wang,Mingxue Gao,Jun Zhang,Quan‐Hong Yang,Zhen Li
标识
DOI:10.1002/adma.202312486
摘要
Abstract Compared with conventional inorganic materials, organic electrodes are competitive candidates for secondary battery cathodes due to their resourcefulness, environmental friendliness, and cost‐effectiveness. Much effort is devoted at the level of chemical structure, while ignoring the impact of molecular aggregation on battery behavior. Herein, this work designs a series of organic molecules with two electrochemically active phenothiazine groups linked by different lengths of alkyl chain to regulate molecular symmetry and crystallinity. The results emphasize the equally important role of molecular aggregation and chemical structure for battery performance. Among them, 2PTZ‐C 7 H 14 |Li cell exhibits the most impressive cycle and rate performance. At the high rate of 50 C, it can still deliver a capacity of 63.4 mA h g −1 and 74.5% capacity retention after 10 000 cycles. Besides, the dropout voltage of 2PTZ‐C 9 H 18 |Li cell is only 52 mV, which is among the lowest reported for lithium‐organic batteries to the best of the author's knowledge.
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