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Cobalt/nitrogen codoped carbon nanosheets derived from catkins as a high performance non-noble metal electrocatalyst for oxygen reduction reaction and hydrogen evolution reaction

Novel energy devices which are capable of alleviating and/or solving the energy dilemma such as overall water splitting and fuel cells require the development of highly efficient catalysts, especially cheap high performance non-precious metal (NPM) catalysts. Here, we prepare highly efficient NPM ca...

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Autores principales: Song, Luting, Chang, Jinquan, Ma, Yanhong, Tan, Xinghua, Xu, Yuanqing, Guo, Limin, Chen, Zhexue, Zhao, Tingqiao, Li, Yueqi, Liu, Yanlin, Zhang, Yong, Chu, Weiguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9058186/
https://www.ncbi.nlm.nih.gov/pubmed/35519725
http://dx.doi.org/10.1039/d0ra08750e
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author Song, Luting
Chang, Jinquan
Ma, Yanhong
Tan, Xinghua
Xu, Yuanqing
Guo, Limin
Chen, Zhexue
Zhao, Tingqiao
Li, Yueqi
Liu, Yanlin
Zhang, Yong
Chu, Weiguo
author_facet Song, Luting
Chang, Jinquan
Ma, Yanhong
Tan, Xinghua
Xu, Yuanqing
Guo, Limin
Chen, Zhexue
Zhao, Tingqiao
Li, Yueqi
Liu, Yanlin
Zhang, Yong
Chu, Weiguo
author_sort Song, Luting
collection PubMed
description Novel energy devices which are capable of alleviating and/or solving the energy dilemma such as overall water splitting and fuel cells require the development of highly efficient catalysts, especially cheap high performance non-precious metal (NPM) catalysts. Here, we prepare highly efficient NPM catalysts of cobalt and nitrogen codoped carbon nanosheets (Co/N–CNSs) for oxygen reduction reaction (ORR) and hydrogen evolution reaction (HER) using harmful environment-polluting waste of biomass catkins as carbon precursors via a mild mechanical exfoliation and chemical process which is facile, low-cost, environmentally friendly and up-scalable. Compared with a commercial platinum-based catalyst (commercial 20% Pt/C), the Co/N–CNS electrocatalysts show outstanding ORR activity, acceptable HER activity and long term stability with an onset potential of 0.92 V versus the reversible hydrogen electrode (vs. RHE) and a half-wave potential of 0.83 V vs. the RHE in alkaline electrolytes. The excellent performance is closely related to the presence of abundant CoN(x) active sites. This work offers a novel and effective approach for preparing highly efficient ORR and HER NPM electrocatalysts from waste biomass materials.
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spelling pubmed-90581862022-05-04 Cobalt/nitrogen codoped carbon nanosheets derived from catkins as a high performance non-noble metal electrocatalyst for oxygen reduction reaction and hydrogen evolution reaction Song, Luting Chang, Jinquan Ma, Yanhong Tan, Xinghua Xu, Yuanqing Guo, Limin Chen, Zhexue Zhao, Tingqiao Li, Yueqi Liu, Yanlin Zhang, Yong Chu, Weiguo RSC Adv Chemistry Novel energy devices which are capable of alleviating and/or solving the energy dilemma such as overall water splitting and fuel cells require the development of highly efficient catalysts, especially cheap high performance non-precious metal (NPM) catalysts. Here, we prepare highly efficient NPM catalysts of cobalt and nitrogen codoped carbon nanosheets (Co/N–CNSs) for oxygen reduction reaction (ORR) and hydrogen evolution reaction (HER) using harmful environment-polluting waste of biomass catkins as carbon precursors via a mild mechanical exfoliation and chemical process which is facile, low-cost, environmentally friendly and up-scalable. Compared with a commercial platinum-based catalyst (commercial 20% Pt/C), the Co/N–CNS electrocatalysts show outstanding ORR activity, acceptable HER activity and long term stability with an onset potential of 0.92 V versus the reversible hydrogen electrode (vs. RHE) and a half-wave potential of 0.83 V vs. the RHE in alkaline electrolytes. The excellent performance is closely related to the presence of abundant CoN(x) active sites. This work offers a novel and effective approach for preparing highly efficient ORR and HER NPM electrocatalysts from waste biomass materials. The Royal Society of Chemistry 2020-11-27 /pmc/articles/PMC9058186/ /pubmed/35519725 http://dx.doi.org/10.1039/d0ra08750e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Song, Luting
Chang, Jinquan
Ma, Yanhong
Tan, Xinghua
Xu, Yuanqing
Guo, Limin
Chen, Zhexue
Zhao, Tingqiao
Li, Yueqi
Liu, Yanlin
Zhang, Yong
Chu, Weiguo
Cobalt/nitrogen codoped carbon nanosheets derived from catkins as a high performance non-noble metal electrocatalyst for oxygen reduction reaction and hydrogen evolution reaction
title Cobalt/nitrogen codoped carbon nanosheets derived from catkins as a high performance non-noble metal electrocatalyst for oxygen reduction reaction and hydrogen evolution reaction
title_full Cobalt/nitrogen codoped carbon nanosheets derived from catkins as a high performance non-noble metal electrocatalyst for oxygen reduction reaction and hydrogen evolution reaction
title_fullStr Cobalt/nitrogen codoped carbon nanosheets derived from catkins as a high performance non-noble metal electrocatalyst for oxygen reduction reaction and hydrogen evolution reaction
title_full_unstemmed Cobalt/nitrogen codoped carbon nanosheets derived from catkins as a high performance non-noble metal electrocatalyst for oxygen reduction reaction and hydrogen evolution reaction
title_short Cobalt/nitrogen codoped carbon nanosheets derived from catkins as a high performance non-noble metal electrocatalyst for oxygen reduction reaction and hydrogen evolution reaction
title_sort cobalt/nitrogen codoped carbon nanosheets derived from catkins as a high performance non-noble metal electrocatalyst for oxygen reduction reaction and hydrogen evolution reaction
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9058186/
https://www.ncbi.nlm.nih.gov/pubmed/35519725
http://dx.doi.org/10.1039/d0ra08750e
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