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A Universal Approach to Aqueous Energy Storage via Ultralow-Cost Electrolyte with Super-Concentrated Sugar as Hydrogen-Bond-Regulated Solute

机译:通过超低成本糖与氢键调节溶质的超低成本电解质储存水的通用方法

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摘要

Aqueous energy-storage systems have attracted wide attention due to their advantages such as high security, low cost, and environmental friendliness. However, the specific chemical properties of water induce the problems of narrow electrochemical stability window, low stability of water-electrode interface reactions, and dissolution of electrode materials and intermediate products. Therefore, new low-cost aqueous electrolytes with different water chemistry are required. The nature of water depends largely on its hydroxyl-based hydrogen bonding structure. Therefore, the super-concentrated hydroxyl-rich sugar solutions are designed to change the original hydrogen bonding structure of water. The super-concentrated sugars can reduce the free water molecules and destroy the tetrahedral structure, thus lowering the binding degree of water molecules by breaking the hydrogen bonds. The ionic electrolytes based on super-concentrated sugars have the expanded electrochemical stability window (up to 2.812 V), wide temperature adaptability (-50 to 80 degrees C), and fair ionic conductivity (8.536 mS cm(-1)). Aqueous lithium-, sodium-, potassium-ion batteries and supercapacitors using super-concentrated sugar-based electrolytes demonstrate an excellent electrochemical performance. The advantages of ultralow cost and high universality enable a great practical application potential of the super-concentrated sugar-based aqueous electrolytes, which can also provide great experimental and theoretical assistance for further research in water chemistry.
机译:水性储能系统由于具有安全性高,成本低和环境友好等优点而受到广泛关注。然而,水的特定化学性质引起以下问题:电化学稳定性窗口窄,水-电极界面反应的稳定性低以及电极材料和中间产物的溶解。因此,需要具有不同水化学性质的新型低成本水性电解质。水的性质在很大程度上取决于其基于羟基的氢键结构。因此,设计了超浓缩的富含羟基的糖溶液,以改变水的原始氢键结构。超浓缩糖可以减少游离水分子并破坏四面体结构,从而通过破坏氢键降低水分子的结合度。基于超浓缩糖的离子电解质具有扩展的电化学稳定性窗口(高达2.812 V),宽广的温度适应性(-50至80摄氏度)和适度的离子电导率(8.536 mS cm(-1))。使用超浓缩糖基电解质的锂,钠,钾离子水电池和超级电容器具有出色的电化学性能。超低成本和高通用性的优点使得超浓缩糖基水性电解质具有巨大的实际应用潜力,这也可以为水化学的进一步研究提供巨大的实验和理论帮助。

著录项

  • 来源
    《Advanced Materials》 |2020年第16期|2000074.1-2000074.8|共8页
  • 作者

  • 作者单位

    Chinese Acad Sci Tech Inst Phys & Chem Beijing 100190 Peoples R China;

    Renmin Univ China Dept Chem Beijing 100872 Peoples R China;

    Peking Univ Shenzhen Grad Sch Sch Adv Mat Shenzhen 518055 Peoples R China;

    Renmin Univ China Dept Chem Beijing 100872 Peoples R China|Chinese Acad Sci Beijing Key Lab CryoBiomed Engn Beijing 100190 Peoples R China|Chinese Acad Sci Key Lab Cryogen Tech Inst Phys & Chem Beijing 100190 Peoples R China;

    Chinese Acad Sci Beijing Key Lab CryoBiomed Engn Beijing 100190 Peoples R China|Chinese Acad Sci Key Lab Cryogen Tech Inst Phys & Chem Beijing 100190 Peoples R China;

    Peking Univ Beijing Natl Lab Mol Sci Coll Chem & Mol Engn Beijing 100871 Peoples R China;

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

    aqueous energy storage; free water molecules; sugar; super-concentrated electrolytes;

    机译:水性储能游离水分子;糖;超浓缩电解质;
  • 入库时间 2022-08-18 05:19:01

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