• 其他栏目

    刘啸嵩

    • 教授 博士生导师 硕士生导师
    • 教师拼音名称:liuxiaosong
    • 电子邮箱:
    • 职务:国家同步辐射实验室副主任
    • 办公地点:安徽省合肥市蜀山区合作化南路42号中国科学技术大学国家同步辐射实验室3号楼319
    • 联系方式:0551-63602078
    • 2021年国家高层次人才特殊支持计划科技创新领军人才
    • 2020年江苏省双创团队领军人才
    • 2014年中国科学院“引进海外杰出人才(A类)”
    • 2014年上海市浦江人才

    访问量:

    开通时间:..

    最后更新时间:..

    Additive-Free Self-Presodiation Strategy for High-Performance Na-Ion Batteries

    点击次数:

    DOI码:10.1002/adfm.202101475

    发表刊物:Advanced Functional Materials

    关键字:Na‐ion batteries;quenching method;

    摘要:The irreversible consumption of sodium at the anode side during the first cycle prominently reduces the energy density of Na-ion batteries. Different sacrificial cathode additives have been recently reported to address this problem; however, critical issues such as by-products (e.g., CO2) release during cycling and incompatibility with current battery fabrication procedures potentially deteriorate the full-cell performance and prevent the practical application. Herein, an additive-free self-presodiation strategy is proposed to create lattice-coherent but component-dependent O3-NaxTMMnO2 (TM = transition metal ion(s)) cathodes by a quenching treatment rather than the general natural cooling. The quenching material preserves higher Mn3+ and Na+ content, which is able to release Na+ via Mn3+ oxidation to compensate for sodium consumption during the initial charge while adopting other TM to provide the capacity in the following cycles. Full cells fabricated with hard carbon anode and this material as both cathode and sodium supplement reagent have a nearly 9.4% cathode mass reduction, around 9.9% energy density improvement (from 233 to 256 Wh kg−1), and 8% capacity retention enhancement (from 76% to 84%) after 300 cycles. This study presents the route to rational design cathode materials with sodium reservoir property to simplify the presodiation process as well as improve the full-cell performance.

    合写作者:Qingshi Meng,Pengfei Yu, Haibo Wang,Yaoshen Niu, Yuqi Li,Yang Yang, Yaxiang Lu, Liquan Chen

    第一作者:Feixiang Ding

    通讯作者:Xiaohui Rong,Xiaosong Liu,Yong-sheng Hu

    论文编号:2101475

    卷号:31

    期号:26

    ISSN号:1616-301X

    是否译文:

    发表时间:2021-04-17

    发布期刊链接:https://onlinelibrary.wiley.com/doi/10.1002/adfm.202101475