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Structural Changes in Li2MnO3 Cathode Material for Li-Ion Batteries

机译:锂离子电池正极材料Li2MnO3的结构变化

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摘要

Structural changes in Li2MnO3 cathode material for rechargeable Li-ion batteries are investigated during the first and 33rd cycles. It is found that both the participation of oxygen anions in redox processes and Li+-H+ exchange play an important role in the electrochemistry of Li2MnO3. During activation, oxygen removal from the material along with Li gives rise to the formation of a layered MnO2-type structure, while the presence of protons in the interslab region, as a result of electrolyte oxidation and Li+-H+ exchange, alters the stacking sequence of oxygen layers. Li re-insertion by exchanging already present protons reverts the stacking sequence of oxygen layers. The re-lithiated structure closely resembles the parent Li2MnO3, except that it contains less Li and O. Mn4+ ions remain electrochemically inactive at all times. Irreversible oxygen release occurs only during activation of the material in the first cycle. During subsequent cycles, electrochemical processes seem to involve unusual redox processes of oxygen anions of active material along with the repetitive, irreversible oxidation of electrolyte species. The deteriorating electrochemical performance of Li2MnO3 upon cycling is attributed to the structural degradation caused by repetitive shearing of oxygen layers.
机译:在第一个和第33个循环中研究了可充电锂离子电池用Li2MnO3正极材料的结构变化。发现氧阴离子参与氧化还原过程和Li + -H +交换在Li 2 MnO 3的电化学中起重要作用。在活化过程中,与Li一起从材料中除去氧会形成层状MnO2型结构,而层间区域中的质子由于电解质氧化和Li + -H +交换而变质,从而改变了堆叠顺序氧层。通过交换已经存在的质子来重新插入锂,可以还原氧层的堆积顺序。重新锂化的结构与母体Li2MnO3非常相似,不同之处在于它含有更少的Li和O。Mn4 +离子始终保持电化学惰性。不可逆的氧气释放仅在第一个循环的材料活化过程中发生。在随后的循环中,电化学过程似乎涉及活性物质氧阴离子的异常氧化还原过程以及电解质物质的重复性,不可逆氧化。 Li 2 MnO 3在循环时劣化的电化学性能归因于氧层的重复剪切引起的结构退化。

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  • 来源
    《Advanced energy materials》 |2014年第5期|1-12|共12页
  • 作者单位

    Helmholtz-Zentrum Berlin fÜr Materialien und Energie Berlin Germany;

    Institute of Physical Chemistry MEET Battery Research Centre University of Muenster Muenster Germany;

    Institute of Physical Chemistry MEET Battery Research Centre University of Muenster Muenster Germany;

    Institute of Physical Chemistry MEET Battery Research Centre University of Muenster Muenster Germany;

    Helmholtz-Zentrum Berlin fÜr Materialien und Energie Berlin Germany;

    Deutsches Elektronen-Synchrotron Hamburg Germany;

    Helmholtz-Zentrum Berlin fÜr Materialien und Energie Berlin Germany;

    Helmholtz-Zentrum Berlin fÜr Materialien und Energie Berlin Germany;

    Technische Universitt Berlin Berlin Germany;

    Institute of Physical Chemistry MEET Battery Research Centre University of Muenster Muenster Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Li2MnO3; Li-ion batteries; structural changes; electrochemistry;

    机译:Li2MnO3;锂离子电池;结构变化;电化学;

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