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1. Identity statement
Reference TypeJournal Article
Sitemtc-m21c.sid.inpe.br
Holder Codeisadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S
Identifier8JMKD3MGP3W34R/3UMECTB
Repositorysid.inpe.br/mtc-m21c/2020/01.03.16.27   (restricted access)
Last Update2020:01.03.16.27.42 (UTC) simone
Metadata Repositorysid.inpe.br/mtc-m21c/2020/01.03.16.27.42
Metadata Last Update2022:01.04.01.34.55 (UTC) administrator
DOI10.1016/j.matchemphys.2019.122101
ISSN0254-0584
Citation KeyAlmeidaFerr:2020:StElAn
TitleFabrication of binary composites from polyaniline deposits on carbon fibers heat treated at three different temperatures: Structural and electrochemical analyses for potential application in supercapacitors
Year2020
MonthJan.
Access Date2024, May 12
Type of Workjournal article
Secondary TypePRE PI
Number of Files1
Size2084 KiB
2. Context
Author1 Almeida, Dalva Alves de Lima
2 Ferreira, Neidenêi Gomes
Resume Identifier1
2 8JMKD3MGP5W/3C9JHU3
Group1 LABAS-COCTE-INPE-MCTIC-GOV-BR
2 LABAS-COCTE-INPE-MCTIC-GOV-BR
Affiliation1 Instituto Nacional de Pesquisas Espaciais (INPE)
2 Instituto Nacional de Pesquisas Espaciais (INPE)
Author e-Mail Address1 dalva.almeida@inpe.br
2 neidenei.ferreira@inpe.br
JournalMaterials Chemistry and Physics
Volume239
Pagese122101
Secondary MarkA1_INTERDISCIPLINAR A1_ENGENHARIAS_III A1_ENGENHARIAS_II A1_ENGENHARIAS_I A2_ODONTOLOGIA A2_MATERIAIS A2_ENGENHARIAS_IV A2_BIODIVERSIDADE B1_QUÍMICA B1_MEDICINA_II B1_FARMÁCIA B1_CIÊNCIAS_BIOLÓGICAS_I B1_BIOTECNOLOGIA B1_ASTRONOMIA_/_FÍSICA B2_ENSINO
History (UTC)2020-01-03 16:27:42 :: simone -> administrator ::
2020-01-03 16:27:43 :: administrator -> simone :: 2019
2020-01-03 16:27:59 :: simone :: 2019 -> 2020
2020-01-03 16:27:59 :: simone -> administrator :: 2020
2022-01-04 01:34:55 :: administrator -> simone :: 2020
3. Content and structure
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Content Stagecompleted
Transferable1
Content TypeExternal Contribution
Version Typepublisher
AbstractRecent studies show that polyaniline (PAni) is one of the widely studied materials because it is easy synthesis, less cost, and low environmental pollution. Moreover, it presents a high theoretical specific capacitance as compared to carbon-based electrodes. Besides, when combined with materials such as porous carbon, graphene, carbon fiber, among others, the resulting electrodes composites present high electrochemical performance with feature commercially viable for practical application on supercapacitors. Carbon fibers (CF) heat-treated at three different temperatures of 1000, 1500, and 2000 °C worked as a template matrix as well as substrates coated with polyaniline (PAni) films, by chemical polymerization of the aniline, to obtain binary composites called PAni/CF-1000, PAni/CF-1500, and PAni/CF-2000, respectively. Composite morphology characterizations were done by scanning electron microscopy and showed that CFs were fully coated by PAni. Structural analyses by Raman spectra presented characteristic bands of the emeraldine salt, confirming that PAni is in its conductive form. The results of electrochemical measurements showed that all composites presented capacitive profiles and good reversibility. Particularly, PAni/CF-1000 showed the greatest PAni growth on CF surface not to mention its largest charge storage capacity, with specific capacitance at around 224 F g−1 and 98% of coulombic efficiency after 1000 cycles.
AreaFISMAT
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Languageen
Target Filealmeida_fabrication.pdf
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5. Allied materials
Next Higher Units8JMKD3MGPCW/3ESR3H2
Citing Item Listsid.inpe.br/bibdigital/2013/09.24.19.30 2
sid.inpe.br/mtc-m21/2012/07.13.14.56.52 1
DisseminationWEBSCI
Host Collectionurlib.net/www/2017/11.22.19.04
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