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首页> 外文期刊>Nano Energy >Rechargeable solid-state lithium metal batteries with vertically aligned ceramic nanoparticle/polymer composite electrolyte
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Rechargeable solid-state lithium metal batteries with vertically aligned ceramic nanoparticle/polymer composite electrolyte

机译:具有垂直对齐的陶瓷纳米粒子/聚合物复合电解质的可充电固态锂金属电池

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摘要

Composite solid electrolytes are attractive as they combine the high ionic conductivity of ceramic nanoparticles and the excellent mechanical properties of polymer electrolytes. Vertically aligned ceramic nanoparticles in the polymer matrix represent an ideal structure for maximizing ionic conductivity of composite electrolytes. The ice-templating method was used to build rechargeable solid-state lithium metal batteries with a vertically aligned ceramic/polymer composite electrolyte composed of high ionic conductivity Li1.5Al0.5Ge1.5(PO4)(3) (LAGP) and polyethylene oxide (PEO) polymer. The vertical LAGP walls provide continuous channels for fast ionic transport, while the PEO matrix renders the composite electrolyte flexible. This solid-state composite electrolyte has a conductivity of 1.67 x 10(-4) S cm(-1) at room temperature and 1.11 x 10(-3) S cm(-1) at 60 degrees C. LiFePO4 (LFP)/vertically aligned LAGP- PEO/Li full cells were also developed with a high capacity retention of 93.3% after 300 cycles. This study demonstrates the successful application of vertically aligned ceramic/polymer composite electrolytes for solid-state batteries with high performance.
机译:复合材料固体电解质与它们相结合的陶瓷纳米颗粒的高离子电导率和聚合物电解质的优异机械性能。聚合物基质中的垂直对齐的陶瓷纳米颗粒代表了用于最大化复合电解质的离子电导率的理想结构。用高离子电导率Li1.5Al0.5Ge1.5(PO4)(3)(LAGP)和聚环氧乙烷(LAGP)和聚环氧丙烷( PEO)聚合物。垂直拉杆壁提供用于快速离子运输的连续通道,而PEO基质使复合电解质柔韧。该固态复合电解质在室温下具有1.67×10(-4)Cm(-1)的电导率,在60摄氏度下为1.11×10(-3)厘米(-1),LiFePO4(LFP)/垂直对齐的LAGP-PEO / LI全细胞也在300次循环后的高容量保持93.3%。该研究表明,具有高性能的固态电池的垂直对准陶瓷/聚合物复合电解质的成功应用。

著录项

  • 来源
    《Nano Energy》 |2019年第2019期|共8页
  • 作者单位

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

    Harbin Inst Technol Sch Astronaut Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Sch Astronaut Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Sch Astronaut Harbin 150001 Heilongjiang Peoples R China;

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

    IREQ Inst Rech Hydro Quebec Varennes PQ J3X 1S1 Canada;

    IREQ Inst Rech Hydro Quebec Varennes PQ J3X 1S1 Canada;

    Columbia Univ Dept Appl Phys &

    Appl Math New York NY 10025 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

    Ice-templating; Composite electrolytes; Solid state batteries; Energy storage;

    机译:冰模板;复合电解质;固态电池;储能;

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