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Robust selenium-doped carbon nitride nanotubes for selective electrocatalytic oxidation of furan compounds to maleic acid

Selective oxidation of biomass-derived furan compounds to maleic acid (MA), an important bulk chemical, is a very attractive strategy for biomass transformation. However, achieving a high MA selectivity remains a great challenge. Herein, we for the first time successfully designed and fabricated Se-...

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Autores principales: Huang, Xin, Song, Jinliang, Hua, Manli, Chen, Bingfeng, Xie, Zhenbing, Liu, Huizhen, Zhang, Zhanrong, Meng, Qinglei, Han, Buxing
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/PMC8115246/
https://www.ncbi.nlm.nih.gov/pubmed/34084432
http://dx.doi.org/10.1039/d1sc01231b
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author Huang, Xin
Song, Jinliang
Hua, Manli
Chen, Bingfeng
Xie, Zhenbing
Liu, Huizhen
Zhang, Zhanrong
Meng, Qinglei
Han, Buxing
author_facet Huang, Xin
Song, Jinliang
Hua, Manli
Chen, Bingfeng
Xie, Zhenbing
Liu, Huizhen
Zhang, Zhanrong
Meng, Qinglei
Han, Buxing
author_sort Huang, Xin
collection PubMed
description Selective oxidation of biomass-derived furan compounds to maleic acid (MA), an important bulk chemical, is a very attractive strategy for biomass transformation. However, achieving a high MA selectivity remains a great challenge. Herein, we for the first time successfully designed and fabricated Se-doped graphitic carbon nitride nanotubes with a chemical formula of C(3.0)N-Se(0.03). The prepared C(3.0)N-Se(0.03) was highly efficient for electrocatalytic oxidation of various biomass-derived furan compounds to generate MA. At ambient conditions, the MA yield could reach 84.2% from the electro-oxidation of furfural. Notably, the substituents on the furan ring significantly affected the selectivity to MA, following the order: carboxyl group > aldehyde group > hydroxyl group. Detailed investigation revealed that Se doping could tune the chemical structure of the materials (e.g., C(3.0)N-Se(0.03) and g-C(3)N(4)), thus resulting in the change in catalytic mechanism. The excellent performance of C(3.0)N-Se(0.03) originated from the suitable amount of graphitic N and its better electrochemical properties, which significantly boosted the oxidation pathway to MA. This work provides a robust and selective metal-free electrocatalyst for the sustainable synthesis of MA from oxidation of biomass-derived furan compounds.
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spelling pubmed-81152462021-06-02 Robust selenium-doped carbon nitride nanotubes for selective electrocatalytic oxidation of furan compounds to maleic acid Huang, Xin Song, Jinliang Hua, Manli Chen, Bingfeng Xie, Zhenbing Liu, Huizhen Zhang, Zhanrong Meng, Qinglei Han, Buxing Chem Sci Chemistry Selective oxidation of biomass-derived furan compounds to maleic acid (MA), an important bulk chemical, is a very attractive strategy for biomass transformation. However, achieving a high MA selectivity remains a great challenge. Herein, we for the first time successfully designed and fabricated Se-doped graphitic carbon nitride nanotubes with a chemical formula of C(3.0)N-Se(0.03). The prepared C(3.0)N-Se(0.03) was highly efficient for electrocatalytic oxidation of various biomass-derived furan compounds to generate MA. At ambient conditions, the MA yield could reach 84.2% from the electro-oxidation of furfural. Notably, the substituents on the furan ring significantly affected the selectivity to MA, following the order: carboxyl group > aldehyde group > hydroxyl group. Detailed investigation revealed that Se doping could tune the chemical structure of the materials (e.g., C(3.0)N-Se(0.03) and g-C(3)N(4)), thus resulting in the change in catalytic mechanism. The excellent performance of C(3.0)N-Se(0.03) originated from the suitable amount of graphitic N and its better electrochemical properties, which significantly boosted the oxidation pathway to MA. This work provides a robust and selective metal-free electrocatalyst for the sustainable synthesis of MA from oxidation of biomass-derived furan compounds. The Royal Society of Chemistry 2021-04-01 /pmc/articles/PMC8115246/ /pubmed/34084432 http://dx.doi.org/10.1039/d1sc01231b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Huang, Xin
Song, Jinliang
Hua, Manli
Chen, Bingfeng
Xie, Zhenbing
Liu, Huizhen
Zhang, Zhanrong
Meng, Qinglei
Han, Buxing
Robust selenium-doped carbon nitride nanotubes for selective electrocatalytic oxidation of furan compounds to maleic acid
title Robust selenium-doped carbon nitride nanotubes for selective electrocatalytic oxidation of furan compounds to maleic acid
title_full Robust selenium-doped carbon nitride nanotubes for selective electrocatalytic oxidation of furan compounds to maleic acid
title_fullStr Robust selenium-doped carbon nitride nanotubes for selective electrocatalytic oxidation of furan compounds to maleic acid
title_full_unstemmed Robust selenium-doped carbon nitride nanotubes for selective electrocatalytic oxidation of furan compounds to maleic acid
title_short Robust selenium-doped carbon nitride nanotubes for selective electrocatalytic oxidation of furan compounds to maleic acid
title_sort robust selenium-doped carbon nitride nanotubes for selective electrocatalytic oxidation of furan compounds to maleic acid
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8115246/
https://www.ncbi.nlm.nih.gov/pubmed/34084432
http://dx.doi.org/10.1039/d1sc01231b
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