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Fundamental Insights from a Single-Crystal Sodium Iridate Battery

机译:单晶铱酸钠电池的基本见解

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Electrochemically driven chemical transformations play the key role in controlling storage of energy in chemical bonds and subsequent conversion to power electric vehicles and consumer electronics. The promise of coupling anionic oxygen redox with cationic redox to achieve a substantial increase in capacities has inspired research in a wide range of electrode materials. A key challenge is that these studies have focused on polycrystalline materials, where it is hard to perform precise structural determinations, especially related to the location of light atoms. Here a different approach is utilized and a highly ordered single crystal, Na2-xIrO3 is harnessed, to explore the role of defects and structural transformations in layered transition metal oxide materials on redox-activity, capacity, reversibility, and stability. Within a combined experimental and theoretical framework, it is demonstrated that 1) it is possible to cycle Na2-xIrO3, offering proof of principle for single-crystal based batteries 2) structural phase transitions coincide with Ir (4+)/Ir (5+) redox couple with no evident contribution from anionic redox 3) strong irreversibility and capacity fade observed during cycling correlates with the Na (+) migration resulting in progressive growth of an electrochemically inert O3-type NaIrO3 phase.
机译:电化学驱动的化学转化在控制化学键中的能量存储以及随后转化为电动汽车和消费电子产品方面发挥着关键作用。将阴离子氧还原与阳离子氧还原相结合以实现容量的大幅提高的承诺激发了对多种电极材料的研究。一个关键的挑战是,这些研究集中在多晶材料上,在那里很难进行精确的结构确定,尤其是与轻原子的位置有关。在这里,采用了一种不同的方法,并利用了高度有序的单晶Na2-xIrO3,以探索缺陷和结构转变在层状过渡金属氧化物材料中对氧化还原活性,容量,可逆性和稳定性的作用。在组合的实验和理论框架内,证明了1)可以循环Na2-xIrO3,为单晶电池提供原理证明2)结构相变与Ir(4 +)/ Ir(5+ )氧化还原对与阴离子氧化还原没有明显贡献3)强烈的不可逆性和循环过程中观察到的容量衰减与Na(+)迁移相关,导致电化学惰性的O3型NaIrO3相逐渐生长。

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  • 来源
    《Advanced energy materials》 |2020年第10期|1903128.1-1903128.9|共9页
  • 作者

  • 作者单位

    Argonne Natl Lab Mat Sci Div 9700 S Cass Ave Argonne IL 60439 USA;

    Argonne Natl Lab Chem Sci & Engn Div 9700 S Cass Ave Argonne IL 60439 USA;

    Northwestern Univ Mat Sci & Engn Dept Evanston IL 60208 USA;

    Northwestern Univ Dept Chem 2145 Sheridan Rd Evanston IL 60208 USA;

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

    Univ Illinois Dept Phys Chicago IL 60607 USA;

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

    electrochemical synthesis; oxygen redox; polycrystalline powders; single-crystals; structural and redox behavior; structural defects;

    机译:电化学合成氧还原多晶粉末;单晶结构和氧化还原行为;结构缺陷;

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