Cargando…

Coordination unsaturation of vanadium nitride quantum dots boosts low-temperature aerobic oxidation of thiophenic sulfides

Aerobic oxidative desulfurization (AODS) promises a sustainable alternative technology for diesel desulfurization, which necessitates the efficient aerobic oxidation of thiophenic sulfides under mild conditions to minimize energy input, yet being longstandingly plagued by the grand challenge in low-...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Huawei, Bai, Jiabao, Zhang, Qinghua, Yang, Lixia, Bai, Liangjiu, Wei, Donglei, Wang, Wenxiang, Liang, Ying, Gu, Lin, Chen, Hou, Guo, Shaojun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9728574/
https://www.ncbi.nlm.nih.gov/pubmed/36540827
http://dx.doi.org/10.1039/d2sc05088a
_version_ 1784845285536563200
author Yang, Huawei
Bai, Jiabao
Zhang, Qinghua
Yang, Lixia
Bai, Liangjiu
Wei, Donglei
Wang, Wenxiang
Liang, Ying
Gu, Lin
Chen, Hou
Guo, Shaojun
author_facet Yang, Huawei
Bai, Jiabao
Zhang, Qinghua
Yang, Lixia
Bai, Liangjiu
Wei, Donglei
Wang, Wenxiang
Liang, Ying
Gu, Lin
Chen, Hou
Guo, Shaojun
author_sort Yang, Huawei
collection PubMed
description Aerobic oxidative desulfurization (AODS) promises a sustainable alternative technology for diesel desulfurization, which necessitates the efficient aerobic oxidation of thiophenic sulfides under mild conditions to minimize energy input, yet being longstandingly plagued by the grand challenge in low-temperature activation of triplet oxygen. Here we synthesize vanadium nitride quantum dots on graphene to controllably create coordination-unsaturated edge/corner V sites for boosting the AODS reaction. The catalyst activates the reaction at 70 °C, and is two orders of magnitude more active than the best V-based catalysts. We demonstrate through computational studies that the low-coordinated edge/corner V sites can effectively activate oxygen and adsorb sulfides to lower the activation barrier, dramatically enhancing the activity. The catalyst achieves deep AODS of real diesel at 80 °C with negligible attenuation in successive reuses, which highlights its attractive industrial potential. These findings provide scientific and practical insights to develop high-performance catalysts for a sustainable AODS process.
format Online
Article
Text
id pubmed-9728574
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-97285742022-12-19 Coordination unsaturation of vanadium nitride quantum dots boosts low-temperature aerobic oxidation of thiophenic sulfides Yang, Huawei Bai, Jiabao Zhang, Qinghua Yang, Lixia Bai, Liangjiu Wei, Donglei Wang, Wenxiang Liang, Ying Gu, Lin Chen, Hou Guo, Shaojun Chem Sci Chemistry Aerobic oxidative desulfurization (AODS) promises a sustainable alternative technology for diesel desulfurization, which necessitates the efficient aerobic oxidation of thiophenic sulfides under mild conditions to minimize energy input, yet being longstandingly plagued by the grand challenge in low-temperature activation of triplet oxygen. Here we synthesize vanadium nitride quantum dots on graphene to controllably create coordination-unsaturated edge/corner V sites for boosting the AODS reaction. The catalyst activates the reaction at 70 °C, and is two orders of magnitude more active than the best V-based catalysts. We demonstrate through computational studies that the low-coordinated edge/corner V sites can effectively activate oxygen and adsorb sulfides to lower the activation barrier, dramatically enhancing the activity. The catalyst achieves deep AODS of real diesel at 80 °C with negligible attenuation in successive reuses, which highlights its attractive industrial potential. These findings provide scientific and practical insights to develop high-performance catalysts for a sustainable AODS process. The Royal Society of Chemistry 2022-11-22 /pmc/articles/PMC9728574/ /pubmed/36540827 http://dx.doi.org/10.1039/d2sc05088a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Yang, Huawei
Bai, Jiabao
Zhang, Qinghua
Yang, Lixia
Bai, Liangjiu
Wei, Donglei
Wang, Wenxiang
Liang, Ying
Gu, Lin
Chen, Hou
Guo, Shaojun
Coordination unsaturation of vanadium nitride quantum dots boosts low-temperature aerobic oxidation of thiophenic sulfides
title Coordination unsaturation of vanadium nitride quantum dots boosts low-temperature aerobic oxidation of thiophenic sulfides
title_full Coordination unsaturation of vanadium nitride quantum dots boosts low-temperature aerobic oxidation of thiophenic sulfides
title_fullStr Coordination unsaturation of vanadium nitride quantum dots boosts low-temperature aerobic oxidation of thiophenic sulfides
title_full_unstemmed Coordination unsaturation of vanadium nitride quantum dots boosts low-temperature aerobic oxidation of thiophenic sulfides
title_short Coordination unsaturation of vanadium nitride quantum dots boosts low-temperature aerobic oxidation of thiophenic sulfides
title_sort coordination unsaturation of vanadium nitride quantum dots boosts low-temperature aerobic oxidation of thiophenic sulfides
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9728574/
https://www.ncbi.nlm.nih.gov/pubmed/36540827
http://dx.doi.org/10.1039/d2sc05088a
work_keys_str_mv AT yanghuawei coordinationunsaturationofvanadiumnitridequantumdotsboostslowtemperatureaerobicoxidationofthiophenicsulfides
AT baijiabao coordinationunsaturationofvanadiumnitridequantumdotsboostslowtemperatureaerobicoxidationofthiophenicsulfides
AT zhangqinghua coordinationunsaturationofvanadiumnitridequantumdotsboostslowtemperatureaerobicoxidationofthiophenicsulfides
AT yanglixia coordinationunsaturationofvanadiumnitridequantumdotsboostslowtemperatureaerobicoxidationofthiophenicsulfides
AT bailiangjiu coordinationunsaturationofvanadiumnitridequantumdotsboostslowtemperatureaerobicoxidationofthiophenicsulfides
AT weidonglei coordinationunsaturationofvanadiumnitridequantumdotsboostslowtemperatureaerobicoxidationofthiophenicsulfides
AT wangwenxiang coordinationunsaturationofvanadiumnitridequantumdotsboostslowtemperatureaerobicoxidationofthiophenicsulfides
AT liangying coordinationunsaturationofvanadiumnitridequantumdotsboostslowtemperatureaerobicoxidationofthiophenicsulfides
AT gulin coordinationunsaturationofvanadiumnitridequantumdotsboostslowtemperatureaerobicoxidationofthiophenicsulfides
AT chenhou coordinationunsaturationofvanadiumnitridequantumdotsboostslowtemperatureaerobicoxidationofthiophenicsulfides
AT guoshaojun coordinationunsaturationofvanadiumnitridequantumdotsboostslowtemperatureaerobicoxidationofthiophenicsulfides