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二维材料在钾离子混合电容器中的应用。

Application of 2D Materials to Potassium-Ion Hybrid Capacitors.

作者信息

Zhang Dan, Li Le, Deng Jianping, Gou Yuchun, Fang Junfei, Cui Hong, Zhao Yongqiang, Shang Kun

机构信息

Shaanxi Province Key Laboratory of Catalytic Foundation and Application, School of Chemistry and Environment Science, Shaanxi University of Technology, Hanzhong, 723001, P. R. China.

Shaanxi Key Laboratory of Industrial Automation, School of Mechanical Engineering, Shaanxi University of Technology, Hanzhong, 723001, P. R. China.

出版信息

ChemSusChem. 2021 May 6;14(9):1974-1986. doi: 10.1002/cssc.202100255. Epub 2021 Apr 7.

Abstract

Metal-ion hybrid supercapacitors (MICs) are a new type of electrochemical energy storage (EES) device, consisting of a battery-type electrode and a supercapacitor (SC)-type electrode. Exhibiting the advantages of both batteries and SCs (e. g., good energy density, excellent power density and long cycle life), these advanced energy storage devices have considerable commercial application prospects. Among MICs, potassium-ion hybrid supercapacitors (PICs) have several further advantages, including abundancy of resources, low standard electrode potential, and low cost. PICs are regarded as potential substitutes for lithium- or sodium-ion hybrid supercapacitors. However, the practical applications of PICs remain limited, owing to the imbalance of kinetics and capacity between the electrodes, the slow ion/electron diffusion rate, and the poor electrode structural stability. Recently, 2D materials with distinct structures and fascinating features have elicited widespread attention for application in PICs, thus achieving significant enhancements, ranging from charge storage capacity to reaction kinetics. This Review discusses research progress in 2D materials for PICs. Firstly, the energy storage principle and development requirements of MICs are introduced. The pivotal advantages and significant roles of 2D materials in the fabrication of PICs are then discussed in detail. Lastly, the challenges and prospects of the application of 2D materials to high-performance PICs are presented.

摘要

金属离子混合超级电容器(MICs)是一种新型的电化学储能(EES)装置,由电池型电极和超级电容器(SC)型电极组成。这些先进的储能装置兼具电池和超级电容器的优点(例如,良好的能量密度、出色的功率密度和长循环寿命),具有可观的商业应用前景。在金属离子混合超级电容器中,钾离子混合超级电容器(PICs)还有其他一些优点,包括资源丰富、标准电极电位低和成本低。钾离子混合超级电容器被视为锂或钠离子混合超级电容器的潜在替代品。然而,由于电极之间动力学和容量的不平衡、离子/电子扩散速率慢以及电极结构稳定性差,钾离子混合超级电容器的实际应用仍然有限。最近,具有独特结构和迷人特性的二维材料在钾离子混合超级电容器中的应用引起了广泛关注,从而在从电荷存储容量到反应动力学等方面都取得了显著提升。本综述讨论了用于钾离子混合超级电容器的二维材料的研究进展。首先,介绍了金属离子混合超级电容器的储能原理和发展要求。然后详细讨论了二维材料在钾离子混合超级电容器制造中的关键优势和重要作用。最后,介绍了二维材料应用于高性能钾离子混合超级电容器的挑战和前景。

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