Improving Supercapacitance of Electrospun Carbon Nanofibers through Increasing Micropores and Microporous Surface Area
Version 2 2024-06-05, 10:09Version 2 2024-06-05, 10:09
Version 1 2019-03-22, 00:00Version 1 2019-03-22, 00:00
journal contribution
posted on 2024-06-05, 10:09 authored by H Wang, W Wang, Y Li, X Jin, H Niu, H Zhou, T LinImproving Supercapacitance of Electrospun Carbon Nanofibers through Increasing Micropores and Microporous Surface Area
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Chichester, Eng.Open access
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EnglishPublication classification
C1 Refereed article in a scholarly journalCopyright notice
2019, WILEY-VCH Verlag GmbH & CoJournal
Advanced Materials InterfacesVolume
6Article number
ARTN 1801900ISSN
2196-7350eISSN
2196-7350Issue
6Publisher
WILEYUsage metrics
Keywords
Science & TechnologyPhysical SciencesTechnologyChemistry, MultidisciplinaryMaterials Science, MultidisciplinaryChemistryMaterials Sciencecarbon nanofiberselectrodenatural materialpolymer activation agentsupercapacitancePOROUS CARBONELECTROCHEMICAL PERFORMANCEOPTIMIZATIONSTRATEGYSIZE091205 Functional Materials4016 Materials engineering4018 Nanotechnology
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