纳米笼
阴极
材料科学
镁
复合数
化学工程
锂(药物)
石墨烯
纳米颗粒
离子
纳米技术
化学
催化作用
复合材料
冶金
物理化学
医学
生物化学
有机化学
工程类
内分泌学
作者
Qinghua Gong,Guanghai Chen,Gong-ao Tang,Guochang Li,Lijun Yang,Qiang Wu,Xizhang Wang,Zheng Hu
标识
DOI:10.1016/j.xcrp.2024.101897
摘要
Rechargeable magnesium batteries (rMBs) are regarded as an alternative to lithium-ion batteries but are hindered by low cycling stability and sluggish kinetics at present. Herein, we report a sandwich-structured CuS/hNCNC@rGO cathode for rMBs by immobilizing CuS nanoparticles on the hierarchical nitrogen-doped carbon nanocages (hNCNCs) followed by wrapping the reduced graphene oxide (rGO). The charge/discharge mechanism is established based on the unique mixed-valence CuS double-salt structure, i.e., Cu2+S22−⋅Cu+2S2−, which was neglected in the previous studies of CuS-based rMBs. The cathode achieves a high reversible specific capacity of 285 mAh g−1 at 100 mA g−1, an outstanding rate capability of 158 mAh g−1 at 1,000 mA g−1, and ultralong cycling stability at room temperature, superior to most reported cathode materials to date. This study provides a fundamental understanding on the Mg storage mechanism of CuS and suggests a promising strategy for constructing high-performance conversion-type cathodes for rMBs.
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