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首页> 外文期刊>Nanoscale >Unveiling the reaction mechanism of an Sb2S3–Co9S8/NC anode for high-performance lithium-ion batteries
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Unveiling the reaction mechanism of an Sb2S3–Co9S8/NC anode for high-performance lithium-ion batteries

机译:揭幕的反应机理Sb2S3-Co9S8 /高性能数控阳极锂离子电池

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Metal sulfides are promising lithium-ion battery anode materials with high specific capacities, but there has been little in-depth discussion on the reaction mechanism of metal sulfides. In this study, a robust bimetallic sulfide heterogeneous material (Sb2S3–Co9S8/NC) based on a metal–organic framework was designed. The combination of in situ X-ray diffraction and ex situ transmission electron microscopy revealed the phase evolution behavior during the first cycle. During the lithiation process, Sb2S3 undergoes lithium insertion, conversion and alloying reactions to form crystalline Li2S, Li3Sb and metallic Sb. Co9S8 undergoes lithium insertion and transformation to form metallic Co and Li2S. Lithium ions are extracted from the nanocrystalline phase and transformed into the original Sb2S3 and Co9S8 phases. The Sb2S3–Co9S8/NC anode exhibits excellent cycle stability (616 mA h g−1 at 2 A g−1 after 900 cycles) and fast lithium ion transfer kinetics. These results demonstrate the lithiation/delithiation mechanism of the Sb2S3-based anode and provide a new path for the development of high-performance LIB anodes based on bimetallic sulfides.
机译:金属硫化物有前途的锂离子电池阳极材料特定的能力,高但一直没有深入的讨论金属硫化物的反应机理。研究中,一个健壮的双金属硫化物异构基于一个材料(Sb2S3-Co9S8 / NC)有机框架设计。结合原位x射线衍射和交货原位透射电子显微镜在第一个阶段演化行为周期。经历了锂插入,转换和水晶Li2S合金化反应形式,Li3Sb和金属某人Co9S8经历锂插入和转换成金属有限公司和Li2S。纳米晶体阶段和转换成的原始Sb2S3和Co9S8阶段。Sb2S3-Co9S8 /数控阳极展览优秀的周期稳定性(616毫安h g−1在2 g−1 900年之后周期)和快速锂离子传输动力学。这些结果证明lithiation / delithiation机制Sb2S3-based阳极,并提供一个新路径发展高性能自由阳极在双金属硫化物。

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