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Ultrafine NiMoO(x) nanoparticles confined in mesoporous carbon for the reduction of nitroarenes: effect of the composition and accessibility of the active sites

The design of ultrafine NiMoO(x) nanoparticles (NPs) confined in hierarchically porous carbon remains a great challenge due to its high calcination temperature. In addition, the composition of active sites of NiMoO(x) NPs for the hydrogenation reaction is still ambiguous. Herein, we report a general...

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Autores principales: Li, Shuna, Lv, Yipin, Song, Guolong, Li, Cuncheng, Gao, Daowei, Chen, Guozhu
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/PMC9060605/
https://www.ncbi.nlm.nih.gov/pubmed/35520158
http://dx.doi.org/10.1039/c8ra09026b
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author Li, Shuna
Lv, Yipin
Song, Guolong
Li, Cuncheng
Gao, Daowei
Chen, Guozhu
author_facet Li, Shuna
Lv, Yipin
Song, Guolong
Li, Cuncheng
Gao, Daowei
Chen, Guozhu
author_sort Li, Shuna
collection PubMed
description The design of ultrafine NiMoO(x) nanoparticles (NPs) confined in hierarchically porous carbon remains a great challenge due to its high calcination temperature. In addition, the composition of active sites of NiMoO(x) NPs for the hydrogenation reaction is still ambiguous. Herein, we report a general approach for the synthesis of ultrafine NiMoO(x) NPs confined in mesoporous carbon with different morphologies and compositions using the replication method with SBA-15 as a hard template. The pore structure of mesoporous carbon and the Ni/Mo composition valence-state were discovered to be the main factors in the reduction of nitroarenes. The NiMoO(x)/mesoporous carbon-platelet (NiMoO(x)/MC-PL) with short mesochannels (∼350 nm) and high surface area (∼995 m(2) g(−1)) possessed excellent catalytic activity towards the reduction of 4-nitrophenol, whereas NiMoO(x)/mesoporous carbon-hexagonal-prism (NiMoO(x)/MC-HP), NiMoO(x)/mesoporous carbon-long-rod (NiMoO(x)/MC-LR), and NiMoO(x)/mesoporous carbon-spherical (NiMoO(x)/MC-SP) with long mesochannels and relatively less surface area exhibited poor catalytic performance. The bifunctional mechanism or electronic synergistic effects of Ni and Mo species enhanced their catalytic performance. A good balance between MoO(x) and metallic Ni (NiMoO(x)/MC-PL-450) was found to be suitable for the reduction of 4-NP.
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spelling pubmed-90606052022-05-04 Ultrafine NiMoO(x) nanoparticles confined in mesoporous carbon for the reduction of nitroarenes: effect of the composition and accessibility of the active sites Li, Shuna Lv, Yipin Song, Guolong Li, Cuncheng Gao, Daowei Chen, Guozhu RSC Adv Chemistry The design of ultrafine NiMoO(x) nanoparticles (NPs) confined in hierarchically porous carbon remains a great challenge due to its high calcination temperature. In addition, the composition of active sites of NiMoO(x) NPs for the hydrogenation reaction is still ambiguous. Herein, we report a general approach for the synthesis of ultrafine NiMoO(x) NPs confined in mesoporous carbon with different morphologies and compositions using the replication method with SBA-15 as a hard template. The pore structure of mesoporous carbon and the Ni/Mo composition valence-state were discovered to be the main factors in the reduction of nitroarenes. The NiMoO(x)/mesoporous carbon-platelet (NiMoO(x)/MC-PL) with short mesochannels (∼350 nm) and high surface area (∼995 m(2) g(−1)) possessed excellent catalytic activity towards the reduction of 4-nitrophenol, whereas NiMoO(x)/mesoporous carbon-hexagonal-prism (NiMoO(x)/MC-HP), NiMoO(x)/mesoporous carbon-long-rod (NiMoO(x)/MC-LR), and NiMoO(x)/mesoporous carbon-spherical (NiMoO(x)/MC-SP) with long mesochannels and relatively less surface area exhibited poor catalytic performance. The bifunctional mechanism or electronic synergistic effects of Ni and Mo species enhanced their catalytic performance. A good balance between MoO(x) and metallic Ni (NiMoO(x)/MC-PL-450) was found to be suitable for the reduction of 4-NP. The Royal Society of Chemistry 2019-02-06 /pmc/articles/PMC9060605/ /pubmed/35520158 http://dx.doi.org/10.1039/c8ra09026b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Shuna
Lv, Yipin
Song, Guolong
Li, Cuncheng
Gao, Daowei
Chen, Guozhu
Ultrafine NiMoO(x) nanoparticles confined in mesoporous carbon for the reduction of nitroarenes: effect of the composition and accessibility of the active sites
title Ultrafine NiMoO(x) nanoparticles confined in mesoporous carbon for the reduction of nitroarenes: effect of the composition and accessibility of the active sites
title_full Ultrafine NiMoO(x) nanoparticles confined in mesoporous carbon for the reduction of nitroarenes: effect of the composition and accessibility of the active sites
title_fullStr Ultrafine NiMoO(x) nanoparticles confined in mesoporous carbon for the reduction of nitroarenes: effect of the composition and accessibility of the active sites
title_full_unstemmed Ultrafine NiMoO(x) nanoparticles confined in mesoporous carbon for the reduction of nitroarenes: effect of the composition and accessibility of the active sites
title_short Ultrafine NiMoO(x) nanoparticles confined in mesoporous carbon for the reduction of nitroarenes: effect of the composition and accessibility of the active sites
title_sort ultrafine nimoo(x) nanoparticles confined in mesoporous carbon for the reduction of nitroarenes: effect of the composition and accessibility of the active sites
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9060605/
https://www.ncbi.nlm.nih.gov/pubmed/35520158
http://dx.doi.org/10.1039/c8ra09026b
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