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Kinetic insights into the integration of polyoxometalate clusters on reduced graphene oxide for enhanced electrochemical performance in energy storage applications

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Autor(es):
Cesario, Serena Nogueira ; Ferreira, Bianca Taina ; Martins, Matheus ; Gomez-Romero, Pedro ; Huguenin, Fritz
Número total de Autores: 5
Tipo de documento: Artigo Científico
Fonte: Journal of Solid State Electrochemistry; v. N/A, p. 8-pg., 2024-11-14.
Resumo

This article explores the electrochemical reactions in the hybrid material phosphotungstic acid (PW12)/reduced graphene oxide (rGO), resulting from the integration of polyoxometalate (POM) clusters into rGO sheets, aiming for its application in supercapacitors. The synthesis process employs a direct chemical approach, leveraging the anchoring capability of rGO. Morphological analyses confirm the open porous structure of rGO sheets, increasing the number of electroactive sites per geometric area unit and facilitating ion transport to maintain the electrolytic connection between electroactive sites and the solution. The observed low irreversibility is crucial for achieving high power density. A frequency-domain kinetic model is proposed to better understand the electrochemical processes, enabling the extraction of kinetic parameters and the estimation of the amount of accessible and accessed active sites as a function of electric potential, aiding in the selection of active and support materials to increase charge storage capacity and energy density. (AU)

Processo FAPESP: 21/12735-1 - Sistemas fotoeletroquímicos de dessalinização sob fluxo contínuo
Beneficiário:Fritz Cavalcante Huguenin
Modalidade de apoio: Auxílio à Pesquisa - Regular
Processo FAPESP: 17/11986-5 - Geração e Armazenamento de Novas Energias: trazendo desenvolvimento tecnológico para o país
Beneficiário:Ana Flávia Nogueira
Modalidade de apoio: Auxílio à Pesquisa - Programa Centros de Pesquisa em Engenharia
Processo FAPESP: 23/07179-8 - Cinética de Reações Pseudocapacitivas: Ácido Fosfotungstico/Óxido de Grafeno Reduzido em meio Ácido.
Beneficiário:Serena Nogueira Cesario
Modalidade de apoio: Bolsas no Brasil - Iniciação Científica