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Understanding the Orderliness of Atomic Arrangement toward Enhanced Sodium Storage

机译:了解原子安排对增强钠储存的秩序

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摘要

In response to the increased demands of available energy storage, sodium ion batteries (SIBs) appear as promising alternatives to widely used lithium ion batteries. However, because of large radius of Na ions, more complex requirements for the intrinsic properties raise the difficulties in finding a suitable material, in particularly for electrodes with intercalation mechanism. Concerning the principle of designing effective electrodes, the ordering of atomic arrangements should be at the heart in SIBs due to its significant influences on various electrochemical processes, such as ion absorption, ion diffusion, electron diffusion, etc. As proof-of-concept, the state-of-the art TiO2 electrodes with different orderliness of atomic arrangement are achieved through colloidal crystal template method assisted by low-temperature atomic layer deposition and post-heating treatment. The disordering at the surface is benefit for the contribution from surface processes, which is particularly significant to the electrode materials with poorer affinity of transporting ions. Meanwhile, the disordering in bulk results in better ion diffusion, but worse electron transport. Understanding this relationship between atomic orderliness and battery performance is of importance for extending the design principle to some traditional electrodes for highly effective energy storage.
机译:响应于可用储能的需求增加,钠离子电池(SIB)显示为广泛使用锂离子电池的有前途的替代品。然而,由于Na离子的大半径,内在特性的更复杂要求提高了在具有插入机构的电极的难以找到合适材料的困难。关于设计有效电极的原理,由于其对各种电化学工艺的显着影响,例如离子吸收,离子扩散,电子扩散等作为概念验证,因此应该在SIB中的心脏排序。通过由低温原子层沉积和后加热后处理辅助的胶体晶体模板方法实现具有不同原子布置的最新的TiO 2电极。表面的失调是益处从表面过程的贡献,这对于具有较差的输送离子的亲和力尤其重要。同时,散装中的失调导致更好的离子扩散,但较差的电子传输。了解原子有序和电池性能之间的这种关系对于将设计原理扩展到一些传统电极的设计原理,以实现高效的能量存储。

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  • 来源
    《Advanced energy materials 》 |2016年第23期| 1600448.1-1600448.10| 共10页
  • 作者单位

    Tech Univ Ilmenau Inst Phys IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Inst Phys IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Univ Sci & Technol China Dept Mat Sci & Engn Hefei 230026 Peoples R China;

    Tech Univ Ilmenau Inst Phys IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Inst Phys IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Inst Phys IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Inst Phys IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Inst Phys IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Inst Phys IMN MacroNano ZIK D-98693 Ilmenau Germany;

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

    atomic arrangements; intercalation; inverse opal; orderliness; sodium-ion batteries;

    机译:原子排列;嵌入;反蛋白石;有序;钠离子电池;

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