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Solvothermal water-diethylene glycol synthesis of LiCoPO4 and effects of surface treatments on lithium battery performance

机译:LiCopo4的溶剂热水 - 二乙二醇合成及表面处理对锂电池性能的影响

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摘要

Olivine-structured LiCoPO4 is prepared via a facile solvothermal synthesis, using various ratios of water/diethylene glycol co-solvent, followed by thermal treatment under Ar, air, 5%H-2/N-2 or NH3. The diethylene glycol plays an important role in tailoring the particle size of LiCoPO4. It is found that using a ratio of water/diethylene glycol of 1:6 (v/v), LiCoPO4 is obtained with a homogenous particle size of approximate to 150 nm. The bare LiCoPO4 prepared after heating in Ar exhibits high initial discharge capacity of 147 mA h g(-1) at 0.1C with capacity retention of 70% after 40 cycles. This is attributed to the enhanced electronic conductivity of LiCoPO4 due to the presence of Co2P after firing under Ar. The effects of carbon, TiN and RuO2 coating are also examined. Contrary to other studies, it is found that the solvothermally synthesised LiCoPO4 samples produced here do not require conductive coatings to achieve good performance.
机译:橄榄石结构的LiCopo4通过容易的溶剂热合成制备,使用各种水/二甘醇共溶剂,然后在Ar,空气,5%H-2 / N-2或NH 3下进行热处理。 二乙二醇在剪裁LiCopo4的粒径中起重要作用。 发现,使用1:6(v / v)的水/二甘醇的比例,得到均匀粒度的差异约为150nm。 在AR中加热后制备的裸LiCopo4在0.1℃下在0.1℃下表现出147 mA H(-1)的高初始放电容量,在40次循环后容量保持70%。 这归因于由于在AR下烧制后的CO 2P的存在,因此归因于LiCopo4的电子电导率。 还检查了碳,锡和ruO2涂层的影响。 与其他研究相反,发现这里生产的溶剂热合成的LiCopo4样品不需要导电涂层来实现良好的性能。

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  • 来源
    《RSC Advances》 |2019年第2期|共13页
  • 作者单位

    Univ Southampton Sch Chem Southampton SO17 1BJ Hants England;

    Univ Southampton Sch Chem Southampton SO17 1BJ Hants England;

    Univ Southampton Sch Chem Southampton SO17 1BJ Hants England;

    Univ Southampton Sch Chem Southampton SO17 1BJ Hants England;

    UCL Dept Chem 20 Gordon St London WC1H 0AJ England;

    Univ Southampton Sch Chem Southampton SO17 1BJ Hants England;

    Univ Southampton Sch Chem Southampton SO17 1BJ Hants England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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