Recent advancements in supercapacitors and their charge storage mechanism and progress in transition metal sulfide-based electrodes

超级电容器 材料科学 电化学 电容 储能 电极 纳米技术 电化学储能 电化学动力学 过渡金属 硫化物 复合数 工程物理 复合材料 冶金 热力学 化学 工程类 物理 功率(物理) 生物化学 物理化学 催化作用
作者
M. Shakir Khan,Mohammad Shariq,Souhail Mohammed Bouzgarrou,R. E. Azooz,Syed Kashif Ali,W.A. Ghaly,K. F. Hassan
出处
期刊:Physica Scripta [IOP Publishing]
卷期号:99 (6): 062001-062001 被引量:9
标识
DOI:10.1088/1402-4896/ad3f8a
摘要

Abstract Efficient energy storage strategies have become a major priority in the last few years. Transition metal sulphides are popularly known as attractive electrode materials or supercapacitors due to their high theoretical capacitance, excellent electrical conductivity, and favourable redox properties. Through compositional and structural engineering, some transition metal sulphides like Mn, V, Co, Fe, Cu, Ni, Mo, Zn, W, and Sn have shown substantial improvements in electrochemical performance. Composite engineering and morphological control are two of the key strategies employed to improve the TMS electrode’s electrochemical performance. Excellent electrochemical TMSs address the issues of slow kinetics, poor stability, and large volume expansions. This study reveal optimised TMSs potential to transform supercapacitor applications and provides viable approaches to conquer current hurdles to shape the forthcoming century’s high-performance and low-cost energy storage technology. The effects of composite engineering and morphological control on the ultimate electrochemical performance of the electrode materials are the primary focus of this investigation. Challenges to the further advancement of transition metal sulphide-based electrode materials are also explored in this article. Critical approaches to resolving significant issues in our current understanding of the kinetic and mechanistic perspectives of charge storage processes, i.e., slow kinetics, poor stability, and volume expansions, are also highlighted. Ultimately, future potentials, challenges, and possible solutions to tackle these problems are broadly discussed.

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