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Current innovations and future prospects of metal oxide electrospun materials for supercapacitor technology:A review

作     者:Sonali Ajay Beknalkar Aviraj Mahadev Teli Jae Cheol Shin Sonali Ajay Beknalkar;Aviraj Mahadev Teli;Jae Cheol Shin

作者机构:Division of Electronics and Electrical EngineeringDongguk University-Seoul30Pildong-roJung-guSeoul 04620South Korea 

出 版 物:《Journal of Materials Science & Technology》 (材料科学技术(英文版))

年 卷 期:2023年第166卷第35期

页      面:208-233页

核心收录:

学科分类:080503[工学-材料加工工程] 08[工学] 0805[工学-材料科学与工程(可授工学、理学学位)] 0703[理学-化学] 

基  金:This work was financially supported by the National Research Foundation of Korea South Korea(No.NRF 2020R1A2C1015206) 

主  题:Electrospinning Supercapacitor Metal oxides New strategies Nanofibers 

摘      要:Metal oxides with one-dimensional(1-D)nanostructures have shown promise as electrode materials for supercapacitors due to their unique properties,such as high aspect ratio,increased interaction between electrode and electrolyte,favourable mechanical strength,and short ion transportation pathways that im-prove the charge-discharge rates of electrons and *** is an effective technique for cre-ating 1-D metal oxide nanostructures that produce highly porous nanofibrous structures with exceptional specific surface areas,predictable pore size distributions,and tunable interconnected *** paper provides a comprehensive review of the literature on electrospun metal oxide nanostructures for superca-pacitors,including the principles and key parameters of electrospinning,an overview of supercapacitors,the charge storage mechanism of electrospun metal oxides,and recent developments in 1-D electrospun nanostructures,from binary to ternary metal *** review also discusses unresolved issues and future directions in this research ***,this paper offers valuable insights into the latest devel-opments,unresolved issues,and prospects of 1-D nanostructured metal oxides fabricated through elec-trospinning for supercapacitor applications,providing a critical analysis of their potential in this rapidly evolving field.

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