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Tailor-made dual doping for morphology control of polyaniline chains in cellulose nanofiber-based flexible electrodes: electrical and electrochemical performance

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dc.title Tailor-made dual doping for morphology control of polyaniline chains in cellulose nanofiber-based flexible electrodes: electrical and electrochemical performance en
dc.contributor.author Bautkinová, Tereza
dc.contributor.author Mazúr, Petr
dc.contributor.author Soukupová, Gabriela
dc.contributor.author Dendisová, Marcela
dc.contributor.author Prokeš, Jan
dc.contributor.author Jurča, Marek
dc.contributor.author Kopecký, Dušan
dc.contributor.author Lhotka, Miloslav
dc.contributor.author Ulbrich, Pavel
dc.contributor.author Hassouna, Fatima
dc.relation.ispartof Journal of Materials Science
dc.identifier.issn 0022-2461 Scopus Sources, Sherpa/RoMEO, JCR
dc.identifier.issn 1573-4803 Scopus Sources, Sherpa/RoMEO, JCR
dc.date.issued 2022
utb.relation.volume 57
utb.relation.issue 29
dc.citation.spage 13945
dc.citation.epage 13961
dc.type article
dc.language.iso en
dc.publisher Springer
dc.identifier.doi 10.1007/s10853-022-07491-3
dc.relation.uri https://link.springer.com/article/10.1007/s10853-022-07491-3
dc.description.abstract The present study revealed the effect of combining one strong-inorganic and weak-organic protonic acid dopants on the electrical conductivity and electrochemical properties of flexible free-standing composite electrodes based on polyaniline and nanofibrillated cellulose (NFC) or its carboxylated analog (CNFC), synthesized using a bottom-up approach. Hydrochloric acid (HCl) served as a low molecular weight inorganic dopant while phytic acid (PhA) and poly(2-acrylamido-2-methyl-1-propanesulfonic acid) (PAAMPSA) were chosen as the organic dopants. Both PhA and PAAMPSA acted as secondary dopants in the dually doped composites through the molecular conformation changes of PANI chains. Synergistic increase in the electrical conductivity is observed for dually doped PANI-NFC with the combination of PAAMPSA and HCl in comparison with PhA and HCl. Unlike the PhA, the morphological changes induced by PAAMPSA are more favorable for the enhancement of conductivity. Neither the morphological changes, nor the carboxylation of NFC affected the electrochemical properties of the composites as the specific capacitance values were influenced mainly by the type and the strength of the individual acids. The capacitance values per gram of the dually doped composite with PAAMPSA and HCl increased with the decrease in the NFC or CNFC loading reaching values above 200 F.g(-1) measured at 50 mV.s(-1) of composite for the 80 wt% PANI content. These results highlight the profound impacts of the secondary dopant in PANI on the performance of PANI-based nanocellulose composites. en
utb.faculty University Institute
dc.identifier.uri http://hdl.handle.net/10563/1011079
utb.identifier.obdid 43884276
utb.identifier.scopus 2-s2.0-85134525566
utb.identifier.wok 000827391500001
utb.identifier.coden JMTSA
utb.source j-scopus
dc.date.accessioned 2022-08-17T13:17:24Z
dc.date.available 2022-08-17T13:17:24Z
dc.description.sponsorship CZ.02.1.01/0.0/0.0/16_025/0007445; Grantová Agentura České Republiky, GA ČR: GAČR No. 21–09830S
dc.description.sponsorship Czech Science Foundation (GACR) [21-09830S]; European Regional Development Fund-Project (ORGBAT) [CZ.02.1.01/0.0/0.0/16_025/0007445]; Specific University Research [A2_FCHI_2022_007]
utb.ou Centre of Polymer Systems
utb.contributor.internalauthor Jurča, Marek
utb.fulltext.affiliation Tereza Bautkinová 1 , Petr Mazúr1, Gabriela Soukupová 1, Marcela Dendisová 1,Jan Prokeš2, Marek Jurča3, Dušan Kopecký1, Miloslav Lhotka4, Pavel Ulbrich5, and Fatima Hassouna1,* 1 Faculty of Chemical Engineering, University of Chemistry and Technology, 166 28 Prague 6, Prague, Czech Republic 2 Faculty of Mathematics and Physics, Charles University, 180 00 Prague 8, Czech Republic 3 Centre of Polymer Systems, Tomas Bata University in Zlín, 760 01 Zlín, Czech Republic 4 Faculty of Chemical Technology, University of Chemistry and Technology, 166 28 Prague 6, Prague, Czech Republic 5 Faculty of Food and Biochemical Technology, University of Chemistry and Technology Prague, 166 28 Prague 6, Czech Republic
utb.fulltext.dates Received: 10 March 2022 Accepted: 24 June 2022 Published online: 19 July 2022
utb.fulltext.sponsorship The authors would like to thank Czech Science Foundation (GAČR No. 21–09830S) for the financial support. We thank also European Regional Development Fund-Project (ORGBAT) No. CZ.02.1.01/0.0/0.0/16_025/0007445 for the financial support of Dr. Mazúr. The authors would like to thank also the Specific University Research (A2_FCHI_2022_007).
utb.wos.affiliation [Bautkinova, Tereza; Mazur, Petr; Soukupova, Gabriela; Dendisova, Marcela; Kopecky, Dusan; Hassouna, Fatima] Univ Chem & Technol, Fac Chem Engn, Prague 166286, Czech Republic; [Prokes, Jan] Charles Univ Prague, Fac Math & Phys, Prague 18000 8, Czech Republic; [Jurca, Marek] Tomas Bata Univ Zlin, Ctr Polymer Syst, Zlin 76001, Czech Republic; [Lhotka, Miloslav] Univ Chem & Technol, Fac Chem Technol, Prague 16628 6, Czech Republic; [Ulbrich, Pavel] Univ Chem & Technol Prague, Fac Food & Biochem Technol, Prague 16628 6, Czech Republic
utb.scopus.affiliation Faculty of Chemical Engineering, University of Chemistry and Technology, Prague 6, Prague, 166 28, Czech Republic; Faculty of Mathematics and Physics, Charles University, Prague 8, 180 00, Czech Republic; Centre of Polymer Systems, Tomas Bata University in Zlín, Zlín, 760 01, Czech Republic; Faculty of Chemical Technology, University of Chemistry and Technology, Prague 6, Prague, 166 28, Czech Republic; Faculty of Food and Biochemical Technology, University of Chemistry and Technology Prague, Prague 6, 166 28, Czech Republic
utb.fulltext.projects 21–09830S
utb.fulltext.projects ORGBAT CZ.02.1.01/0.0/0.0/16_025/0007445
utb.fulltext.projects A2_FCHI_2022_007
utb.fulltext.faculty University Institute
utb.fulltext.ou Centre of Polymer Systems
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