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Atomically dispersed Fe atoms anchored on COF-derived N-doped carbon nanospheres as efficient multi-functional catalysts

Non-noble metal isolated single atom site (ISAS) catalysts have attracted much attention due to their low cost, ultimate atom efficiency and outstanding catalytic performance. Herein, atomically dispersed Fe atoms are prepared by a covalent organic framework (COF)-absorption–pyrolysis strategy. The...

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Autores principales: Wei, Shengjie, Wang, Yu, Chen, Wenxing, Li, Zhi, Cheong, Weng-Chon, Zhang, Qinghua, Gong, Yue, Gu, Lin, Chen, Chen, Wang, Dingsheng, Peng, Qing, Li, Yadong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8145617/
https://www.ncbi.nlm.nih.gov/pubmed/34123053
http://dx.doi.org/10.1039/c9sc05005a
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author Wei, Shengjie
Wang, Yu
Chen, Wenxing
Li, Zhi
Cheong, Weng-Chon
Zhang, Qinghua
Gong, Yue
Gu, Lin
Chen, Chen
Wang, Dingsheng
Peng, Qing
Li, Yadong
author_facet Wei, Shengjie
Wang, Yu
Chen, Wenxing
Li, Zhi
Cheong, Weng-Chon
Zhang, Qinghua
Gong, Yue
Gu, Lin
Chen, Chen
Wang, Dingsheng
Peng, Qing
Li, Yadong
author_sort Wei, Shengjie
collection PubMed
description Non-noble metal isolated single atom site (ISAS) catalysts have attracted much attention due to their low cost, ultimate atom efficiency and outstanding catalytic performance. Herein, atomically dispersed Fe atoms are prepared by a covalent organic framework (COF)-absorption–pyrolysis strategy. The obtained Fe ISASs anchored on COF-derived N-doped carbon nanospheres (Fe-ISAS/CN) served as a multi-functional catalyst in electro-catalysis and organic catalysis, exhibiting better catalytic performance than commercial Pt/C for the ORR with good stability and methanol tolerance. Besides electro-catalysis, the Fe-ISAS/CN also showed outstanding catalytic performance in organic reactions, such as the selective oxidation of ethylbenzene to acetophenone and dehydrogenation of 1,2,3,4-tetrahydroquinoline with excellent reactivity, selectivity, stability and recyclability. Co and Ni ISAS materials can also be prepared by this method, suggesting that it is a general strategy to obtain metal ISAS catalysts. This work will provide new insight into the design of COF-derived metal ISAS multi-functional catalysts for electro-catalysis and organic reactions using rationally designed synthetic routes and the optimized structure of substrates.
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spelling pubmed-81456172021-06-11 Atomically dispersed Fe atoms anchored on COF-derived N-doped carbon nanospheres as efficient multi-functional catalysts Wei, Shengjie Wang, Yu Chen, Wenxing Li, Zhi Cheong, Weng-Chon Zhang, Qinghua Gong, Yue Gu, Lin Chen, Chen Wang, Dingsheng Peng, Qing Li, Yadong Chem Sci Chemistry Non-noble metal isolated single atom site (ISAS) catalysts have attracted much attention due to their low cost, ultimate atom efficiency and outstanding catalytic performance. Herein, atomically dispersed Fe atoms are prepared by a covalent organic framework (COF)-absorption–pyrolysis strategy. The obtained Fe ISASs anchored on COF-derived N-doped carbon nanospheres (Fe-ISAS/CN) served as a multi-functional catalyst in electro-catalysis and organic catalysis, exhibiting better catalytic performance than commercial Pt/C for the ORR with good stability and methanol tolerance. Besides electro-catalysis, the Fe-ISAS/CN also showed outstanding catalytic performance in organic reactions, such as the selective oxidation of ethylbenzene to acetophenone and dehydrogenation of 1,2,3,4-tetrahydroquinoline with excellent reactivity, selectivity, stability and recyclability. Co and Ni ISAS materials can also be prepared by this method, suggesting that it is a general strategy to obtain metal ISAS catalysts. This work will provide new insight into the design of COF-derived metal ISAS multi-functional catalysts for electro-catalysis and organic reactions using rationally designed synthetic routes and the optimized structure of substrates. The Royal Society of Chemistry 2019-11-30 /pmc/articles/PMC8145617/ /pubmed/34123053 http://dx.doi.org/10.1039/c9sc05005a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wei, Shengjie
Wang, Yu
Chen, Wenxing
Li, Zhi
Cheong, Weng-Chon
Zhang, Qinghua
Gong, Yue
Gu, Lin
Chen, Chen
Wang, Dingsheng
Peng, Qing
Li, Yadong
Atomically dispersed Fe atoms anchored on COF-derived N-doped carbon nanospheres as efficient multi-functional catalysts
title Atomically dispersed Fe atoms anchored on COF-derived N-doped carbon nanospheres as efficient multi-functional catalysts
title_full Atomically dispersed Fe atoms anchored on COF-derived N-doped carbon nanospheres as efficient multi-functional catalysts
title_fullStr Atomically dispersed Fe atoms anchored on COF-derived N-doped carbon nanospheres as efficient multi-functional catalysts
title_full_unstemmed Atomically dispersed Fe atoms anchored on COF-derived N-doped carbon nanospheres as efficient multi-functional catalysts
title_short Atomically dispersed Fe atoms anchored on COF-derived N-doped carbon nanospheres as efficient multi-functional catalysts
title_sort atomically dispersed fe atoms anchored on cof-derived n-doped carbon nanospheres as efficient multi-functional catalysts
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8145617/
https://www.ncbi.nlm.nih.gov/pubmed/34123053
http://dx.doi.org/10.1039/c9sc05005a
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