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潜在的过渡金属硫化物和后过渡金属硫化物作为储能应用的高效电极:综述

Potential transition and post-transition metal sulfides as efficient electrodes for energy storage applications: review.

作者信息

Kajana Thirunavukarasu, Pirashanthan Arumugam, Velauthapillai Dhayalan, Yuvapragasam Akila, Yohi Shivatharsiny, Ravirajan Punniamoorthy, Senthilnanthanan Meena

机构信息

Clean Energy Research Laboratory, Department of Physics, University of Jaffna Jaffna Sri Lanka

Department of Chemistry, University of Jaffna Jaffna Sri Lanka

出版信息

RSC Adv. 2022 Jun 20;12(28):18041-18062. doi: 10.1039/d2ra01574a. eCollection 2022 Jun 14.

Abstract

Electrochemical energy storage has attracted much attention due to the common recognition of sustainable energy development. Transition metal sulfides and post-transition metal sulfides have been intensively been focused on due to their potential as electrode materials for energy storage applications in different types of capacitors such as supercapacitors and pseudocapacitors, which have high power density and long cycle life. Herein, the physicochemical properties of transition and post-transition metal sulfides, their typical synthesis, structural characterization, and electrochemical energy storage applications are reviewed. Various perspectives on the design and fabrication of transition and post-transition metal sulfides-based electrode materials having capacitive applications are discussed. This review further discusses various strategies to develop transition and/or post-transition metal sulfide heterostructured electrode-based self-powered photocapacitors with high energy storage efficiencies.

摘要

由于可持续能源发展已得到广泛认可,电化学储能备受关注。过渡金属硫化物和后过渡金属硫化物因其作为不同类型电容器(如超级电容器和赝电容器)储能应用电极材料的潜力而受到广泛关注,这些电容器具有高功率密度和长循环寿命。本文综述了过渡金属硫化物和后过渡金属硫化物的物理化学性质、其典型合成方法、结构表征以及电化学储能应用。讨论了关于设计和制备具有电容应用的过渡金属硫化物和后过渡金属硫化物基电极材料的各种观点。本综述还进一步讨论了开发具有高储能效率的基于过渡金属硫化物和/或后过渡金属硫化物异质结构电极的自供电光电容器的各种策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae57/9208027/dd7ebca6f3a6/d2ra01574a-f1.jpg

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