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首页> 外文期刊>ACS applied materials & interfaces >Spinel/Layered Heterostructured Lithium-Rich Oxide Nanowires as Cathode Material for High-Energy Lithium-Ion Batteries
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Spinel/Layered Heterostructured Lithium-Rich Oxide Nanowires as Cathode Material for High-Energy Lithium-Ion Batteries

机译:尖晶石/层状异质结构锂富氧化物纳米作为高能量锂离子电池的阴极材料

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摘要

Lithium-rich oxide material has been considered as an attractive candidate for high-energy cathode for lithium-ion batteries (LIBs). However, the practical applications are still hindered due to its low initial reversible capacity, severe voltage decaying, and unsatisfactory rate capability. Among all, the voltage decaying is a serious barrier that results in a large decrease of energy density during long-term cycling. To overcome these issues, herein, an efficient strategy of fabricating lithium-rich oxide nanowires with spinel/layered heterostructure is proposed. Structural characterizations verify that the spinel/layered heterostructured nanowires are a self-assembly of a lot of nanoparticles, and the Li4Mn5O12 spinel phase is embedded inside the layered structure. When the material is used as cathode of LIBs, the spinel/layered heterostructured nanowires can display an extremely high invertible capacity of 290.1 mA h g(-1) at 0.1 C and suppressive voltage fading. Moreover, it exhibits a favorable cycling stability with capacity retention of 94.4% after charging/discharging at 0.5 C for 200 cycles and it shows an extraordinary rate capability (183.9 mA h g(-1), 10 C). The remarkable electrochemical properties can be connected with the spinel/layered heterostructure, which is in favor of Li+ transport kinetics and enhancing structural stability during the cyclic process.
机译:富含锂的氧化物材料被认为是用于锂离子电池(LIBS)的高能阴极的有吸引力的候选者。然而,由于其初始可逆容量,严重的电压衰减和不令人满意的速率能力,因此仍然阻碍了实际应用。其中,电压衰减是一种严重屏障,导致长期循环期间能量密度的大大降低。为了克服这些问题,本文提出了用尖晶石/层状异质结构制造富锂氧化物纳米线的有效策略。结构表征验证尖晶石/层状异质结构纳米线是大量纳米颗粒的自组装,Li4MN5O12尖晶石相嵌入层状结构内。当材料用作Libs的阴极时,尖晶石/层状异质结构纳米线可以在0.1c和抑制电压衰落时显示出290.1mA H g(-1)的极高可逆性。此外,它在0.5℃下充电/放电200次循环后,它表现出良好的循环稳定性94.4%,并且显示出非凡的速率能力(183.9 mA H(-1),10c)。显着的电化学性能可以与尖晶石/层状异质结构连接,这有利于Li +运输动力学并在循环过程中提高结构稳定性。

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  • 来源
    《ACS applied materials & interfaces》 |2017年第47期|共14页
  • 作者单位

    Xiangtan Univ Hunan Prov Key Lab Electrochem Energy Storage &

    C Natl Local Joint Engn Lab Key Mat New Energy Stor Natl Base Int Sci &

    Technol Cooperat Sch Chem Xiangtan 411105 Hunan Peoples R China;

    Xiangtan Univ Hunan Prov Key Lab Electrochem Energy Storage &

    C Natl Local Joint Engn Lab Key Mat New Energy Stor Natl Base Int Sci &

    Technol Cooperat Sch Chem Xiangtan 411105 Hunan Peoples R China;

    Xiangtan Univ Hunan Prov Key Lab Electrochem Energy Storage &

    C Natl Local Joint Engn Lab Key Mat New Energy Stor Natl Base Int Sci &

    Technol Cooperat Sch Chem Xiangtan 411105 Hunan Peoples R China;

    Xiangtan Univ Hunan Prov Key Lab Electrochem Energy Storage &

    C Natl Local Joint Engn Lab Key Mat New Energy Stor Natl Base Int Sci &

    Technol Cooperat Sch Chem Xiangtan 411105 Hunan Peoples R China;

    Xiangtan Univ Hunan Prov Key Lab Electrochem Energy Storage &

    C Natl Local Joint Engn Lab Key Mat New Energy Stor Natl Base Int Sci &

    Technol Cooperat Sch Chem Xiangtan 411105 Hunan Peoples R China;

    Xiangtan Univ Hunan Prov Key Lab Electrochem Energy Storage &

    C Natl Local Joint Engn Lab Key Mat New Energy Stor Natl Base Int Sci &

    Technol Cooperat Sch Chem Xiangtan 411105 Hunan Peoples R China;

    Xiangtan Univ Hunan Prov Key Lab Electrochem Energy Storage &

    C Natl Local Joint Engn Lab Key Mat New Energy Stor Natl Base Int Sci &

    Technol Cooperat Sch Chem Xiangtan 411105 Hunan Peoples R China;

    Xiangtan Univ Hunan Prov Key Lab Electrochem Energy Storage &

    C Natl Local Joint Engn Lab Key Mat New Energy Stor Natl Base Int Sci &

    Technol Cooperat Sch Chem Xiangtan 411105 Hunan Peoples R China;

    Xiangtan Univ Hunan Prov Key Lab Electrochem Energy Storage &

    C Natl Local Joint Engn Lab Key Mat New Energy Stor Natl Base Int Sci &

    Technol Cooperat Sch Chem Xiangtan 411105 Hunan Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    lithium-ion batteries; lithium-rich oxide nanowires; spinel/layered heterostructure; mitigated voltage fading; high rate capability;

    机译:锂离子电池;富含锂氧化物纳米线;尖晶石/层状异质结构;缓解电压衰落;高速率能力;

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