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首页> 外文期刊>Advanced energy materials >Vanadyl Phosphates A_xVOPO_4 (A = Li, Na, K) as Multielectron Cathodes for Alkali-Ion Batteries
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Vanadyl Phosphates A_xVOPO_4 (A = Li, Na, K) as Multielectron Cathodes for Alkali-Ion Batteries

机译:磷酸钒α_xvopo_4(a = li,na,k)作为碱离子电池的多电元体阴极

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摘要

Vanadyl phosphates comprise a class of multielectron cathode materials capable of cycling two Li+, about 1.66 Na+, and some K+ ions per redox center. In this review, structures, thermodynamic stabilities, and ion diffusion kinetics of various A(x)VOPO(4) (A = Li, Na, K, NH4) polymorphs are discussed. Both the experimental data and first-principle calculations indicate kinetic limitations for alkali metal ions cycling, especially between for 0 = x = 1, and metastability of phases with x 1. This creates challenges for multiple-ion cycling, as the slow kinetics call for nanosized particles, which being metastable and reactive with organic electrolytes are prone to side reactions. Thus, various synthesis approaches, surface coating, and transition metal ion substitution strategies are discussed here as possible ways to stabilize A(x)VOPO(4) structures and improve alkali metal ion diffusion. The role of advanced characterization techniques, such as X-ray absorption spectroscopy, diffraction, pair distribution function analysis and Li-7 and P-31 NMR, in understanding the reaction mechanism from both structural and electronic points of view is emphasized.
机译:磷酸钒包含一类能够循环两种Li +,约1.66na +,以及每种氧化还原中心的一些K +离子的类别的型多电池阴极材料。在本综述中,讨论了各种A(x)vopo(4)(a = li,Na,K,NH 4)多晶型物的结构,热力学稳定性和离子扩散动力学。实验数据和第一原理计算都表明碱金属离子循环的动力学限制,特别是在0 <= x <= 1之间,以及X> 1的相位的常量性。这会为多离子循环产生挑战,因为缓慢动力学呼叫纳米化颗粒,其具有含有有机电解质的亚稳态和反应性易于反应。因此,这里认为各种合成方法,表面涂层和过渡金属离子取代策略作为稳定(X)载体(4)结构并改善碱金属离子扩散的可能方法。强调,高级表征技术的作用,例如X射线吸收光谱,衍射,对分布函数分析和Li-7和P-31 NMR,在理解来自两个结构和电子观点的反应机制中,得到了视图。

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  • 来源
    《Advanced energy materials 》 |2020年第47期| 2002638.1-2002638.23| 共23页
  • 作者单位

    Binghamton Univ Northeast Ctr Chem Energy Storage Binghamton NY 13902 USA;

    Binghamton Univ Northeast Ctr Chem Energy Storage Binghamton NY 13902 USA;

    Binghamton Univ Northeast Ctr Chem Energy Storage Binghamton NY 13902 USA;

    Binghamton Univ Northeast Ctr Chem Energy Storage Binghamton NY 13902 USA;

    Binghamton Univ Northeast Ctr Chem Energy Storage Binghamton NY 13902 USA;

    Binghamton Univ Northeast Ctr Chem Energy Storage Binghamton NY 13902 USA;

    MIT Dept Mat Sci & Engn Cambridge MA 02139 USA;

    Binghamton Univ Northeast Ctr Chem Energy Storage Binghamton NY 13902 USA;

    Binghamton Univ Dept Phys Appl Phys & Astron & Northeast Ctr Chem Energy St Binghamton NY USA;

    Argonne Natl Lab Adv Photon Source Xray Sci Div Argonne IL 60439 USA;

    Univ Cambridge Dept Chem Lensfield Rd Cambridge CB2 1EW England;

    Univ Cambridge Dept Chem Lensfield Rd Cambridge CB2 1EW England;

    Binghamton Univ Dept Phys Appl Phys & Astron & Northeast Ctr Chem Energy St Binghamton NY USA;

    Univ Calif San Diego Dept NanoEngn 9500 GilmanDr 0448 La Jolla CA 92093 USA;

    SUNY Stony Brook Dept Chem New York NY 11974 USA;

    Univ Cambridge Dept Chem Lensfield Rd Cambridge CB2 1EW England;

    Binghamton Univ Northeast Ctr Chem Energy Storage Binghamton NY 13902 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cathode materials; Li#8208; ion batteries; vanadium compounds;

    机译:阴极材料;锂离子电池;钒化合物;

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