Busca avançada
Ano de início
Entree
(Referência obtida automaticamente do Web of Science, por meio da informação sobre o financiamento pela FAPESP e o número do processo correspondente, incluída na publicação pelos autores.)

Pinus nigra pine derived hierarchical carbon foam for high performance supercapacitors

Texto completo
Autor(es):
Khalid, Mohd [1] ; Paul, Rajib [2] ; Honorato, Ana M. B. [2, 3] ; Varela, Hamilton [1]
Número total de Autores: 4
Afiliação do(s) autor(es):
[1] Univ Sao Paulo, Inst Chem Sao Carlos, POB 780, BR-13560970 Sao Carlos, SP - Brazil
[2] Case Western Reserve Univ, Dept Macromol Sci & Engn, 10900 Euclid Ave, Cleveland, OH 44106 - USA
[3] Univ Fed Sao Carlos, Dept Mat Engn, Washington Luiz Rd, Km 235, BR-13565905 Sao Carlos, SP - Brazil
Número total de Afiliações: 3
Tipo de documento: Artigo Científico
Fonte: JOURNAL OF ELECTROANALYTICAL CHEMISTRY; v. 863, APR 15 2020.
Citações Web of Science: 0
Resumo

Biomass comprises an attractive source of carbon materials for energy conversion and storage applications, because it provides a low cost and sustainable approach for the production of carbon-based electrode materials at large scale. Here, we demonstrate the preparation of a three-dimensional and hierarchical carbon foam (3DCF) from biorenewable Pinus nigra pine, using a chemical degradation method followed by two simple carbonization steps in presence of argon gas. The as-prepared 3DCF in supercapacitor electrode shows high scan rate capability up to 10 V s(-1), specific capacitance of 165 F g(-1) at the specific current of 3.3 A g(-1) in 6 M KOH electrolyte in three-electrode cell configuration, and retains 69.6% of its initial capacitance when the specific current increasedto 13.3 Ag-1. Furthermore, a 3DCF based symmetrical two-electrode cell has been constructed that shows a satisfactory specific energy of 6.6 Wh kg-1 at specific power of 2.3 kW kg(-1), and maintains the specific energy of about 50% at high specific power of 7.3 kW kg-1 under an operating voltage of 1.4 V in 2 M LiClO4 aqueous electrolyte. These results reveal a sustainable and low-cost electrode fabrication at large quantity for fabricating high performance supercapacitors with both KOH and Li-ion based electrolytes. (C) 2020 Elsevier B.V. All rights reserved. (AU)

Processo FAPESP: 13/16930-7 - Eletrocatálise V: processos eletrocatalíticos de interconversão entre as energias química e elétrica
Beneficiário:Edson Antonio Ticianelli
Modalidade de apoio: Auxílio à Pesquisa - Temático