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用于电容式和混合储能及其他应用的阴离子存储材料的新兴趋势。

Emerging trends in anion storage materials for the capacitive and hybrid energy storage and beyond.

作者信息

Dou Qingyun, Wu Nanzhong, Yuan Haocheng, Shin Kang Ho, Tang Yongbing, Mitlin David, Park Ho Seok

机构信息

School of Chemical Engineering, Sungkyunkwan University (SKKU), 2066 Seoburo, Jangan-gu, Suwon 440-746, Korea.

出版信息

Chem Soc Rev. 2021 Jun 21;50(12):6734-6789. doi: 10.1039/d0cs00721h. Epub 2021 May 6.

Abstract

Electrochemical capacitors charge and discharge more rapidly than batteries over longer cycles, but their practical applications remain limited due to their significantly lower energy densities. Pseudocapacitors and hybrid capacitors have been developed to extend Ragone plots to higher energy density values, but they are also limited by the insufficient breadth of options for electrode materials, which require materials that store alkali metal cations such as Li and Na. Herein, we report a comprehensive and systematic review of emerging anion storage materials for performance- and functionality-oriented applications in electrochemical and battery-capacitor hybrid devices. The operating principles and types of dual-ion and whole-anion storage in electrochemical and hybrid capacitors are addressed along with the classification, thermodynamic and kinetic aspects, and associated interfaces of anion storage materials in various aqueous and non-aqueous electrolytes. The charge storage mechanism, structure-property correlation, and electrochemical features of anion storage materials are comprehensively discussed. The recent progress in emerging anion storage materials is also discussed, focusing on high-performance applications, such as dual-ion- and whole-anion-storing electrochemical capacitors in a symmetric or hybrid manner, and functional applications including micro- and flexible capacitors, desalination, and salinity cells. Finally, we present our perspective on the current impediments and future directions in this field.

摘要

电化学电容器在较长循环周期内的充放电速度比电池更快,但由于其能量密度显著较低,其实际应用仍然有限。赝电容器和混合电容器已被开发出来,以将拉贡图扩展到更高的能量密度值,但它们也受到电极材料选择范围不足的限制,电极材料需要能够存储锂和钠等碱金属阳离子的材料。在此,我们报告了一篇全面而系统的综述,内容涉及用于电化学和电池-电容器混合装置中面向性能和功能应用的新兴阴离子存储材料。文中讨论了电化学电容器和混合电容器中双离子存储和全阴离子存储的工作原理及类型,以及各种水性和非水性电解质中阴离子存储材料的分类、热力学和动力学方面以及相关界面。全面讨论了阴离子存储材料的电荷存储机制、结构-性能相关性和电化学特性。还讨论了新兴阴离子存储材料的最新进展,重点是高性能应用,如以对称或混合方式存储双离子和全阴离子的电化学电容器,以及功能应用,包括微型和柔性电容器、脱盐和盐度电池。最后,我们阐述了对该领域当前障碍和未来方向的看法。

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