化学
灵活性(工程)
数码产品
电池(电)
锂(药物)
有机自由基电池
离子
降级(电信)
共轭体系
纳米技术
电极
电化学
计算机科学
材料科学
电信
聚合物
数学
统计
量子力学
医学
有机化学
功率(物理)
物理化学
内分泌学
物理
作者
Chengliang Wang,Yang Xu,Yaoguo Fang,Min Zhou,Liying Liang,Sukhdeep Singh,Huaping Zhao,Andreas Schober,Yong Lei
摘要
Organic sodium-ion batteries (SIBs) are potential alternatives of current commercial inorganic lithium-ion batteries for portable electronics (especially wearable electronics) because of their low cost and flexibility, making them possible to meet the future flexible and large-scale requirements. However, only a few organic SIBs have been reported so far, and most of them either were tested in a very slow rate or suffered significant performance degradation when cycled under high rate. Here, we are focusing on the molecular design for improving the battery performance and addressing the current challenge of fast-charge and -discharge. Through reasonable molecular design strategy, we demonstrate that the extension of the π-conjugated system is an efficient way to improve the high rate performance, leading to much enhanced capacity and cyclability with full recovery even after cycled under current density as high as 10 A g(-1).
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