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Preparation of Highly Oriented Porous LiCoO2 Crystal Films via Li-Vapor Crystal Growth Method

机译:通过锂蒸气晶体生长方法制备高温多孔LiCoO2晶体膜

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摘要

To construct better Li-ion-based batteries, highly oriented porous LiCoO2 crystal film is urgently needed for an active positive electrode. In this study, we prepared such a crystal film via the Li-vapor crystal growth method, which involves a simple reaction between the CoO substrate and Li vapor. Highly crystalline LiCoO2 particles 2-3 mu m in size were grown on the CoO substrate surface with strong relation of their orientation. The 110 - and 018 -oriented LiCoO2 particles, which are preferable for Li-ion conduction, were generated on the CoO(110) substrate. On the CoO(111) substrate, LiCoO2 particles were grown with not only the 003 orientation but also the 012 orientation, suggesting that the crystal growth should follow the three-dimensional structure of the CoO and LiCoO2 lattice. Both the prepared LiCoO2 films from the CoO(110) and CoO(111) substrates exhibited stable and superior electrochemical properties for Li-ion battery cycling, indicating that the films will be useful for high-performance Li-ion-based batteries.
机译:为了构建更好的锂离子电池,迫切需要高度取向的多孔LiCoO2结晶膜,用于活性正电极。在这项研究中,我们通过锂蒸气晶体生长方法制备这种晶体膜,涉及Coo衬底和锂蒸气之间的简单反应。高度结晶LiCoO2颗粒的尺寸为2-3μm,在CoO衬底表面上生长,其取向的强关系。 & 110& - 和& 018&在COO(110)衬底上产生优选Li离子传导的LiCoO2颗粒。在CoO(111)衬底上,含有LiCoO 2颗粒,不仅具有& 003&方向还是& 012&方向,表明晶体生长应遵循COO和LiCoO2格的三维结构。来自CoO(110)和CoO(111)衬底的制备的LiCoO 2膜均表现出锂离子电池循环的稳定和优异的电化学性能,表明薄膜可用于高性能锂离子电池。

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  • 来源
    《Crystal growth & design》 |2019年第1期|共7页
  • 作者单位

    Natl Inst Adv Ind Sci &

    Technol Dept Energy &

    Environm Res Inst Electrochem Energy Ikeda Osaka 5638577 Japan;

    Natl Inst Adv Ind Sci &

    Technol Dept Energy &

    Environm Res Inst Electrochem Energy Ikeda Osaka 5638577 Japan;

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

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