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超级电容器用碳基杂化材料综述

Theodore Azemtsop Manfo Hannu Laaksonen

新型炭材料(中英文)2025,Vol.40Issue(1):81-110,30.
新型炭材料(中英文)2025,Vol.40Issue(1):81-110,30.DOI:10.1016/S1872-5805(25)60943-7

超级电容器用碳基杂化材料综述

A review of carbon-based hybrid materials for supercapacitors

Theodore Azemtsop Manfo 1Hannu Laaksonen2

作者信息

  • 1. Department of Electrical Engineering,School of Technology and Innovations,University of Vaasa,Wolffintie 32,65200 Vaasa,Finland||Department of Electrical and Electronics Engineering,Faculty of Engineering and Architecture,Recep Tayyip Erdogan Universitesi,Zihni Derin Yerleşkesi,53100 Rize,Türkiye
  • 2. Department of Electrical Engineering,School of Technology and Innovations,University of Vaasa,Wolffintie 32,65200 Vaasa,Finland
  • 折叠

摘要

Abstract

Supercapacitors are gaining popularity due to their high cycling stability,power density,and fast charge and discharge rates.Researchers are ex-ploring electrode materials,electrolytes,and separat-ors for cost-effective energy storage systems.Ad-vances in materials science have led to the develop-ment of hybrid nanomaterials,such as combining fil-amentous carbon forms with inorganic nanoparticles,to create new charge and energy transfer processes.Notable materials for electrochemical energy-stor-age applications include MXenes,2D transition met-al carbides,and nitrides,carbon black,carbon aerogels,activated carbon,carbon nanotubes,conducting polymers,carbon fibers,and nanofibers,and graphene,because of their thermal,electrical,and mechanical properties.Carbon materials mixed with conducting polymers,ceramics,metal oxides,transition metal oxides,metal hydroxides,transition metal sulfides,trans-ition metal dichalcogenide,metal sulfides,carbides,nitrides,and biomass materials have received widespread attention due to their remarkable performance,eco-friendliness,cost-effectiveness,and renewability.This article explores the development of carbon-based hybrid materials for future supercapacitors,including electric double-layer capacitors,pseudocapacitors,and hy-brid supercapacitors.It investigates the difficulties that influence structural design,manufacturing(electrospinning,hydro-thermal/solvothermal,template-assisted synthesis,electrodeposition,electrospray,3D printing)techniques and the latest car-bon-based hybrid materials research offer practical solutions for producing high-performance,next-generation supercapacitors.

关键词

碳基复合材料/结构设计/电极材料/比电容/超级电容器

Key words

Carbon-based hybrid material/Structure design/Electrode material/Specific capacitance/Supercapacitors

分类

通用工业技术

引用本文复制引用

Theodore Azemtsop Manfo,Hannu Laaksonen..超级电容器用碳基杂化材料综述[J].新型炭材料(中英文),2025,40(1):81-110,30.

新型炭材料(中英文)

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