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Study on the deterioration mechanism of layered rock-salt electrodes using epitaxial thin films Li(Ni, Co, Mn)0(2) and their Zr-O surface modified electrodes

机译:外延薄膜Li(Ni,Co,Mn)0(2)的层状盐岩电极及其Zr-O表面修饰电极的劣化机理研究

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摘要

Deterioration mechanism of Li(Ni, Co, Mn)02 and Zr-O surface modified electrodes has been elucidated using epitaxial thin films synthesized by pulsed laser deposition. The electrodes comprise a mixture of layered rock-salt and spinet phases. The deterioration mechanism is analyzed using cyclic voltammetry, in situ X-ray diffraction measurements, and in situ neutron reflectometry. The spinel phase in the electrodes has low electrochemical activity and is not involved in Li insertion/extraction. The amount of Li participating in the charge-discharge reactions in the layered rock -salt phase increases with cycling, inducing a phase change at the electrode surface, lowering the reversibility. In contrast, in the Zr-O surface modified electrode, the spinel phase does not increase on charging/discharging. Thus, the Zr-O modification stabilizes the surface of layered rock -salt structure, thereby improving the cycling characteristics. Also, after the Zr-O modification, the Li concentration in the liquid electrolyte near the electrode/electrolyte interface increases during charging/discharging. The Zr-O surface modification not only stabilizes the electrode surface but also causes changes on the electrolyte side. Using the mixed model electrodes, we elucidate the mechanism of electrode deterioration and the origin of the improvement in cycling characteristics occurring on surface modification. (C) 2017 Published by Elsevier B.V.
机译:使用脉冲激光沉积合成的外延薄膜阐明了Li(Ni,Co,Mn)02和Zr-O表面改性电极的劣化机理。电极包括层状岩盐相和尖晶石相的混合物。使用循环伏安法,原位X射线衍射测量和原位中子反射仪分析劣化机理。电极中的尖晶石相具有较低的电化学活性,并且不参与锂的插入/提取。参与层状盐岩相中的充放电反应的Li的量随循环而增加,从而在电极表面引起相变,从而降低了可逆性。相反,在Zr-O表面改性的电极中,尖晶石相在充电/放电时不增加。因此,Zr-O改性稳定了层状岩盐结构的表面,从而改善了循环特性。另外,在Zr-O改性之后,在充电/放电期间,电极/电解质界面附近的液体电解质中的Li浓度增加。 Zr-O表面改性不仅使电极表面稳定,而且引起电解质侧的变化。使用混合模型电极,我们阐明了电极变质的机理以及表面改性产生的循环特性改善的根源。 (C)2017由Elsevier B.V.发布

著录项

  • 来源
    《Journal of power sources》 |2017年第31期|108-119|共12页
  • 作者单位

    Toyota Motor Co Ltd, 1 Toyota Cho, Toyota, Aichi 4718572, Japan;

    Toyota Motor Co Ltd, 1 Toyota Cho, Toyota, Aichi 4718572, Japan;

    Tokyo Inst Technol, Midori Ku, 4259 Nagatsuta, Yokohama, Kanagawa 2268502, Japan;

    Tokyo Inst Technol, Midori Ku, 4259 Nagatsuta, Yokohama, Kanagawa 2268502, Japan;

    Tokyo Inst Technol, Midori Ku, 4259 Nagatsuta, Yokohama, Kanagawa 2268502, Japan;

    Japan Atom Energy Agcy, Synchrotron Radiat Res Ctr, Kansai Res Estab, I-1-1 Kouto Sayo cho, Sayo-gun, Hyogo 6795148, Japan;

    Japan Fine Ceram Ctr, Nanostruct Res Lab, Nagoya, Aichi 4568587, Japan;

    Japan Fine Ceram Ctr, Nanostruct Res Lab, Nagoya, Aichi 4568587, Japan;

    Tokyo Inst Technol, Midori Ku, 4259 Nagatsuta, Yokohama, Kanagawa 2268502, Japan|Univ Tokyo, Inst Engn Innovat, Tokyo 1138656, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lithium ion secondary battery; Degradation; Thin-film model electrode; Surface modified electrode;

    机译:锂离子二次电池降解薄膜模型电极表面改性电极;

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