首页> 中文期刊> 《能源化学:英文版》 >Impact of evolution of cathode electrolyte interface of Li(Ni_(0.8)Co_(0.1)Mn_(0.1))O_2 on electrochemical performance during high voltage cycling process

Impact of evolution of cathode electrolyte interface of Li(Ni_(0.8)Co_(0.1)Mn_(0.1))O_2 on electrochemical performance during high voltage cycling process

         

摘要

In this work, the electrochemical performance of LiNi0.8Co0.1Mn0.1O2(NCM811) has been investigated after cycling with various upper cutoff voltages. Noteworthily, electrochemical impedance of NCM811 declined with the increasing cycle number to high voltages. It was found that the decline of charge transfer impedance could be related to the structural and compositional change of cathode electrolyte interphase(CEI) of NCM811 when charging to high voltages, based on the characterization of electrochemical impedance spectroscopy(EIS), X-ray photoelectron spectroscopy(XPS) and transmission electron microscopy(TEM). The corresponding mechanism has also been proposed in this study. Specifically, due to the increasing roughness of cathode surface, the bottom of CEI film and cubic phase on cathode surface form a transition region mainly at high voltages, leading to the nonobvious boundary. This newly formed transition region at high voltages could promote the Li ion diffusion from electrolyte to cathode, then reducing charge transfer impedance. Additionally, the decrease of Li F on the surface of the cathode could also make a contribution to lower the interface impedance. This study delivers a different evolution of CEI on NCM811, and the impact of CEI evolution on electrochemical performance when charging to a high voltage.

著录项

  • 来源
    《能源化学:英文版》 |2020年第8期|P.72-78I0003|共8页
  • 作者单位

    Engineering Laboratory for Next Generation Power and Energy Storage Batteries Graduate School at Shenzhen Tsinghua University Shenzhen 518055 Guangdong ChinaSchool of Materials Science and Engineering Tsinghua University Beijing 100084 China;

    Engineering Laboratory for Next Generation Power and Energy Storage Batteries Graduate School at Shenzhen Tsinghua University Shenzhen 518055 Guangdong China;

    Engineering Laboratory for Next Generation Power and Energy Storage Batteries Graduate School at Shenzhen Tsinghua University Shenzhen 518055 Guangdong ChinaSchool of Materials Science and Engineering Tsinghua University Beijing 100084 China;

    Engineering Laboratory for Next Generation Power and Energy Storage Batteries Graduate School at Shenzhen Tsinghua University Shenzhen 518055 Guangdong China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 蓄电池;
  • 关键词

    Cathode electrolyte interface; NCM811; Overcharge; Rock salt phase;

    机译:阴极电解液界面;NCM811;过充电;岩盐相;
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