首页> 外文期刊>Journal of Materials Science >LiMn0.7Fe0.3PO4 nanorods grown on graphene sheets synthesized in situ by modified microwave-assisted solvothermal method as high-performance cathode materials
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LiMn0.7Fe0.3PO4 nanorods grown on graphene sheets synthesized in situ by modified microwave-assisted solvothermal method as high-performance cathode materials

机译:通过改性的微波辅助溶剂热法作为高性能阴极材料原位原位合成的石墨烯片上生长的LiMn0.7Fe0.3PO4纳米棒

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摘要

Nanosized hybrid cathode materials, LiMn0.7Fe0.3PO4 with olivine structure anchoring on the graphene matrices, were facilely prepared by employing a modified microwave-assisted solvothermal method. Many measurements such as XRD, SEM, TEM, EDS, Raman spectra and XPS have been utilized to identify their physicochemical properties. Electron microscopy analyses revealed that the widely distributed LiMn0.7Fe0.3PO4 nanorods were selectively and homogeneously grown on graphene sheets with rod length of 100-200 nm and diameter of 30-50 nm. In particular, it was fully improved that the deliberate additions of conductive matrix, graphene oxide, have facilitated the specific growth of LiMn0.7Fe0.3PO4 and therefore improved their homogeneity and morphology to form a huge electric network. Electrochemical assessments indicated that the as-synthesized materials delivered an initial discharge capacity of 159.8 mAh g(-1) at 0.1 C and even 81.6 mAh g(-1) at 20 C, meanwhile maintained their excellent rate capability and cycling ability, about 91.7% capacity retention after 80 cycles at 1 C. Theoretically speaking, the excellent electrochemical performance maybe makes these nanosized LiMn0.7Fe0.3PO4 cathode materials a potential candidate for the practical implications in high-power devices and energy storage systems.
机译:通过采用改性微波辅助溶剂热法,纳米化杂化阴极材料用橄榄石结构锚固锚固锚定锚固液体。已经利用了许多测量,例如XRD,SEM,TEM,EDS,拉曼光谱和XPS来识别它们的物理化学性质。电子显微镜分析显示,广泛分布的LIMN0.7FE0.3PO4纳米棒在具有100-200nm的杆长度为100-200nm的石墨烯片上选择性和均匀地生长。特别地,完全改善了导电基质,石墨烯氧化物的故意添加,促进了LiMn0.7Fe0.3PO4的比生长,因此改善了它们的均匀性和形态以形成巨大的电网。电化学评估表明,在20℃的0.1c且均匀81.6mAhg(-1)下,初始放电容量为159.8mAhg(-1),同时保持其优异的速率和循环能力,约为91.7 80次循环后的%容量保留在1℃下。理论上,优异的电化学性能可能使这些纳米型Limn0.7Fe0.3po4阴极材料成为高功率器件和能量存储系统中实际意义的潜在候选者。

著录项

  • 来源
    《Journal of Materials Science》 |2018年第6期|共11页
  • 作者

    Wu Bin; Gao Wenliang;

  • 作者单位

    Chongqing Univ Coll Chem &

    Chem Engn Chongqing 400044 Peoples R China;

    Chongqing Univ Coll Chem &

    Chem Engn Chongqing 400044 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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