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Facile, ethylene glycol-promoted microwave-assisted solvothermal synthesis of high-performance LiCoPO4 as a high-voltage cathode material for lithium-ion batteries

机译:容易,乙二醇 - 促进的微波辅助溶解的高性能LiCopo4作为锂离子电池的高压阴极材料

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摘要

Olivine-type LiCoPO4 is considered a promising high-voltage cathode material for next-generation lithium-ion batteries. However, preparing high-performance LiCoPO4 by a simple approach has been challenging. Herein, we present a facile and rapid (30 min) one-step microwave-assisted solvothermal synthesis route using a 1:1 (v/v) water/ethylene glycol (EG) binary solvent mixture and a temperature of 250 degrees C. The technique delivers high-performance LiCoPO4 nanoparticles without additional post-annealing or carbon coating steps. The as-prepared powder consists of single crystalline LiCoPO4 and features a hexagonal platelet-like morphology with dimensions of 700-800 nm x 400-600 nm x 100-220 nm. Selected area electron diffraction (SAED) experiments reveal that the platelets show the smallest dimension along [010], which is the direction of the lithium diffusion pathways in the olivine crystal structure. Furthermore, the results indicate that the EG co-solvent plays an important role in tailoring the particle size, morphology, and crystal orientation of the material. Co L-edge soft X-ray absorption spectroscopy (XAS) of LiCoPO4 are presented for the first time and confirm that the material only consists of Co2+. Benefiting from the unique morphology, which facilitates Li-ion conduction, electrochemical measurements deliver an initial discharge capacity of 137 mA h g(-1) at 0.1 C, a remarkably stable capacity retention of 68% after 100 cycles at 0.5 C, and a specific energy density of 658 W h kg(-1) based on its capacity and voltage, which is the best performance of LiCoPO4 obtained from microwave-assisted solvothermal synthesis to date.
机译:橄榄石型LiCopo4被认为是下一代锂离子电池的有希望的高压阴极材料。然而,通过简单的方法准备高性能LiCopo4一直在具有挑战性。在此,我们介绍了使用1:1(v / v)水/乙二醇(例如)二元溶剂混合物和250℃的温度的容易和快速(30分钟)一步微波辅助溶剂热合成途径。该技术提供高性能LiCopo4纳米颗粒,无需额外的退火或碳涂层步骤。制备的粉末由单晶LiCoPo4组成,具有六边形血小板状形态,尺寸为700-800nm x 400-600nm x 100-220nm。所选择的区域电子衍射(SAED)实验表明,血小板沿着沿[010]的最小尺寸,这是橄榄石晶体结构中的锂扩散途径的方向。此外,结果表明,例如共溶剂在剪裁材料的粒度,形态和晶体取向方面起着重要作用。 LiCopo4的CO L边缘软X射线吸收光谱(XAs)首次介绍并确认该材料仅由CO2 +组成。受益于促进锂离子传导的独特形态,电化学测量在0.1℃下提供137 mA Hg(-1)的初始放电容量,在0.5℃下100次循环后的68%显着稳定的容量保留,以及特定的基于其容量和电压的能量密度为658 W h kg(-1),这是迄今为止从微波辅助溶剂热合成获得的LiCopo4的最佳性能。

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  • 来源
    《RSC Advances 》 |2016年第86期| 共11页
  • 作者单位

    Tech Univ Munich Dept Chem Synth &

    Characterizat Innovat Mat Lichtenbergstr 4 D-85747 Garching Germany;

    Tech Univ Munich Dept Chem Tech Electrochem Lichtenbergstr 4 D-85747 Garching Germany;

    Tech Univ Munich Dept Chem Tech Electrochem Lichtenbergstr 4 D-85747 Garching Germany;

    BMW AG Petuelring 130 D-80788 Munich Germany;

    SLAC Natl Accelerator Lab Stanford Synchrotron Radiat Lightsource 2575 Sand Hill Rd Menlo Pk CA 94025 USA;

    Lawrence Berkeley Natl Lab Environm Energy Technol Div 1 Cyclotron Rd Berkeley CA 94720 USA;

    Tech Univ Munich Dept Chem Tech Electrochem Lichtenbergstr 4 D-85747 Garching Germany;

    Tech Univ Munich Dept Chem Synth &

    Characterizat Innovat Mat Lichtenbergstr 4 D-85747 Garching Germany;

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  • 正文语种 eng
  • 中图分类 化学 ;
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