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		<doi>10.1590/1980-5373-MR-2022-0142</doi>
		<issn>1516-1439</issn>
		<issn>1980-5373</issn>
		<citationkey>MunozRFMMSBA:2022:ElPrIr</citationkey>
		<title>Electrochemical Properties of Iron Oxide Decorated Activated Carbon Cloth as a Binder-Free Flexible Electrode</title>
		<year>2022</year>
		<typeofwork>journal article</typeofwork>
		<secondarytype>PRE PI</secondarytype>
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		<author>Munoz, Manuella Gobbo C.,</author>
		<author>Rodrigues, Aline Castilho,</author>
		<author>Fonseca, Beatriz Carvalho da Silva,</author>
		<author>Marcuzzo, J. S.,</author>
		<author>Matsushima, Jorge Tadao,</author>
		<author>Silva, G. F. B. Lenz e,</author>
		<author>Baldan, Maurício Ribeiro,</author>
		<author>Amaral-Labat, Gisele Aparecida,</author>
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		<group>COPDT-CGIP-INPE-MCTI-GOV-BR</group>
		<affiliation>Universidade de São Paulo (USP)</affiliation>
		<affiliation>Instituto Nacional de Pesquisas Espaciais (INPE)</affiliation>
		<affiliation>Instituto Nacional de Pesquisas Espaciais (INPE)</affiliation>
		<affiliation>JMHP - Consultoria em Materiais e Informática Ltda</affiliation>
		<affiliation>Faculdade de Tecnologia de São José dos Campos (FATEC)</affiliation>
		<affiliation>Universidade de São Paulo (USP)</affiliation>
		<affiliation>Instituto Nacional de Pesquisas Espaciais (INPE)</affiliation>
		<affiliation>Instituto Nacional de Pesquisas Espaciais (INPE)</affiliation>
		<electronicmailaddress>manuellagobbo@usp.br</electronicmailaddress>
		<electronicmailaddress>alinerodrigues_1@msn.com</electronicmailaddress>
		<electronicmailaddress>beatriz_alpinopolis@hotmail.com</electronicmailaddress>
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		<electronicmailaddress>jtmatsushima@yahoo.com.br</electronicmailaddress>
		<electronicmailaddress></electronicmailaddress>
		<electronicmailaddress>mauricio.baldan@linpe.br</electronicmailaddress>
		<electronicmailaddress>gisele.amarallabat@gmail.com</electronicmailaddress>
		<journal>Materials Research: Ibero-American Journal of Materials</journal>
		<volume>25</volume>
		<number>2</number>
		<pages>e10110142</pages>
		<secondarymark>A2_ENGENHARIAS_II B1_MATERIAIS B1_INTERDISCIPLINAR B1_ENGENHARIAS_III B1_ENGENHARIAS_I B1_CIÊNCIAS_AGRÁRIAS_I B2_MEDICINA_VETERINÁRIA B2_GEOCIÊNCIAS B2_ENGENHARIAS_IV B2_ARQUITETURA_E_URBANISMO B3_ODONTOLOGIA B3_MEDICINA_III B3_MEDICINA_II B3_MEDICINA_I B3_MATEMÁTICA_/_PROBABILIDADE_E_ESTATÍSTICA B3_FARMÁCIA B3_CIÊNCIA_DE_ALIMENTOS B3_ANTROPOLOGIA_/_ARQUEOLOGIA B4_BIOTECNOLOGIA B5_QUÍMICA B5_CIÊNCIAS_BIOLÓGICAS_III B5_CIÊNCIAS_BIOLÓGICAS_II B5_ASTRONOMIA_/_FÍSICA</secondarymark>
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		<keywords>Energy storage, Flexible electrodes, Supercapacitors, Spontaneous deposition, Oxidation.</keywords>
		<abstract>The oxidation and deposition of transition metal oxides on porous carbon precursor materials strongly influence the final performance of supercapacitor electrodes. Thus, the influence of oxidation time combined with simple iron oxide deposition was evaluated on a flexible carbon fiber cloth electrode oxidized at three different times and exposed to spontaneous iron oxide deposition. The 140 minutes oxidation time increased by two times the iron quantity deposited on the activated carbon fiber cloth (ACC) and also increased the crystallinity of the carbon matrix. The iron oxide deposition improved the contribution of anions to store energy, enhancing the pseudocapacitive effect in the samples. The optimal oxidation time of the ACC140_Fe sample with the greater iron oxide deposition achieves 116.8 F g-1. The binder-free flexible electrode presents a successful design through pre-oxidation and spontaneous iron oxide deposition on the carbon matrix without expensive and environmentally unfriendly chemical treatments.</abstract>
		<area>FISMAT</area>
		<language>en</language>
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