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Co(2)O(3)/Co(2)N(0.67) nanoparticles encased in honeycomb-like N, P, O-codoped carbon framework derived from corncob as efficient ORR electrocatalysts

It is essential to develop cost-effective rechargeable metal–air batteries, with high activity, stability, and efficiency, that use non-precious metals (NPMs)-based cathodic oxygen reduction reaction (ORR) catalysts. Here, by using earth-abundant corncob (CC) as the carbon source, Co(OH)(2), NaH(2)P...

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Autores principales: Wu, Yanling, Hou, Qinggao, Qiu, Fangyuan, Qi, Meili, Sun, Cuicui, Chen, Yanli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8978692/
https://www.ncbi.nlm.nih.gov/pubmed/35424525
http://dx.doi.org/10.1039/d1ra07017g
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author Wu, Yanling
Hou, Qinggao
Qiu, Fangyuan
Qi, Meili
Sun, Cuicui
Chen, Yanli
author_facet Wu, Yanling
Hou, Qinggao
Qiu, Fangyuan
Qi, Meili
Sun, Cuicui
Chen, Yanli
author_sort Wu, Yanling
collection PubMed
description It is essential to develop cost-effective rechargeable metal–air batteries, with high activity, stability, and efficiency, that use non-precious metals (NPMs)-based cathodic oxygen reduction reaction (ORR) catalysts. Here, by using earth-abundant corncob (CC) as the carbon source, Co(OH)(2), NaH(2)PO(4), and melamine as the precursors, and KOH as the chemical activator, CoNP@bio-C-a is obtained and comparative studies are carried out with three other types of CC-derived carbon-based catalytic materials, namely, bio-C, CoP@bio-C, and CoNP@bio-C. Depending mainly on the formation of Co(2)O(3)/Co(2)N(0.67) active sites (as p–n heterojunctions) and N, P, O-containing functional groups, the resultant CoNP@bio-C-a catalyst exhibits best electrocatalytic activity among the four types of catalysts; via a 4-electron pathway, it has good stability and good methanol tolerance. In addition, its unique honeycomb-like porous structure, high graphitization degree, and abundant oxygen-containing groups contribute to its excellent ORR activity. This study provides insights for exploring the application of heteroatom-doped biomass-derived carbon catalysts.
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spelling pubmed-89786922022-04-13 Co(2)O(3)/Co(2)N(0.67) nanoparticles encased in honeycomb-like N, P, O-codoped carbon framework derived from corncob as efficient ORR electrocatalysts Wu, Yanling Hou, Qinggao Qiu, Fangyuan Qi, Meili Sun, Cuicui Chen, Yanli RSC Adv Chemistry It is essential to develop cost-effective rechargeable metal–air batteries, with high activity, stability, and efficiency, that use non-precious metals (NPMs)-based cathodic oxygen reduction reaction (ORR) catalysts. Here, by using earth-abundant corncob (CC) as the carbon source, Co(OH)(2), NaH(2)PO(4), and melamine as the precursors, and KOH as the chemical activator, CoNP@bio-C-a is obtained and comparative studies are carried out with three other types of CC-derived carbon-based catalytic materials, namely, bio-C, CoP@bio-C, and CoNP@bio-C. Depending mainly on the formation of Co(2)O(3)/Co(2)N(0.67) active sites (as p–n heterojunctions) and N, P, O-containing functional groups, the resultant CoNP@bio-C-a catalyst exhibits best electrocatalytic activity among the four types of catalysts; via a 4-electron pathway, it has good stability and good methanol tolerance. In addition, its unique honeycomb-like porous structure, high graphitization degree, and abundant oxygen-containing groups contribute to its excellent ORR activity. This study provides insights for exploring the application of heteroatom-doped biomass-derived carbon catalysts. The Royal Society of Chemistry 2021-12-21 /pmc/articles/PMC8978692/ /pubmed/35424525 http://dx.doi.org/10.1039/d1ra07017g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wu, Yanling
Hou, Qinggao
Qiu, Fangyuan
Qi, Meili
Sun, Cuicui
Chen, Yanli
Co(2)O(3)/Co(2)N(0.67) nanoparticles encased in honeycomb-like N, P, O-codoped carbon framework derived from corncob as efficient ORR electrocatalysts
title Co(2)O(3)/Co(2)N(0.67) nanoparticles encased in honeycomb-like N, P, O-codoped carbon framework derived from corncob as efficient ORR electrocatalysts
title_full Co(2)O(3)/Co(2)N(0.67) nanoparticles encased in honeycomb-like N, P, O-codoped carbon framework derived from corncob as efficient ORR electrocatalysts
title_fullStr Co(2)O(3)/Co(2)N(0.67) nanoparticles encased in honeycomb-like N, P, O-codoped carbon framework derived from corncob as efficient ORR electrocatalysts
title_full_unstemmed Co(2)O(3)/Co(2)N(0.67) nanoparticles encased in honeycomb-like N, P, O-codoped carbon framework derived from corncob as efficient ORR electrocatalysts
title_short Co(2)O(3)/Co(2)N(0.67) nanoparticles encased in honeycomb-like N, P, O-codoped carbon framework derived from corncob as efficient ORR electrocatalysts
title_sort co(2)o(3)/co(2)n(0.67) nanoparticles encased in honeycomb-like n, p, o-codoped carbon framework derived from corncob as efficient orr electrocatalysts
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8978692/
https://www.ncbi.nlm.nih.gov/pubmed/35424525
http://dx.doi.org/10.1039/d1ra07017g
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