Cargando…

Phosphorus-Alloying as a Powerful Method for Designing Highly Active and Durable Metal Nanoparticle Catalysts for the Deoxygenation of Sulfoxides: Ligand and Ensemble Effects of Phosphorus

[Image: see text] The modification of metal nanoparticles (NPs) by incorporating additional metals is a key technique for developing novel catalysts. However, the effects of incorporating nonmetals into metal NPs have not been widely explored, particularly in the field of organic synthesis. In this...

Descripción completa

Detalles Bibliográficos
Autores principales: Ishikawa, Hiroya, Yamaguchi, Sho, Nakata, Ayako, Nakajima, Kiyotaka, Yamazoe, Seiji, Yamasaki, Jun, Mizugaki, Tomoo, Mitsudome, Takato
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8889554/
https://www.ncbi.nlm.nih.gov/pubmed/35252991
http://dx.doi.org/10.1021/jacsau.1c00461
_version_ 1784661428448264192
author Ishikawa, Hiroya
Yamaguchi, Sho
Nakata, Ayako
Nakajima, Kiyotaka
Yamazoe, Seiji
Yamasaki, Jun
Mizugaki, Tomoo
Mitsudome, Takato
author_facet Ishikawa, Hiroya
Yamaguchi, Sho
Nakata, Ayako
Nakajima, Kiyotaka
Yamazoe, Seiji
Yamasaki, Jun
Mizugaki, Tomoo
Mitsudome, Takato
author_sort Ishikawa, Hiroya
collection PubMed
description [Image: see text] The modification of metal nanoparticles (NPs) by incorporating additional metals is a key technique for developing novel catalysts. However, the effects of incorporating nonmetals into metal NPs have not been widely explored, particularly in the field of organic synthesis. In this study, we demonstrate that phosphorus (P)-alloying significantly increases the activity of precious metal NPs for the deoxygenation of sulfoxides into sulfides. In particular, ruthenium phosphide NPs exhibit an excellent catalytic activity and high durability against sulfur-poisoning, outperforming conventional catalysts. Various sulfoxides, including drug intermediates, were deoxygenated to sulfides with excellent yields. Detailed investigations into the structure–activity relationship revealed that P-alloying plays a dual role: it establishes a ligand effect on the electron transfer from Ru to P, facilitating the production of active hydrogen species, and has an ensemble effect on the formation of the Ru–P bond, preventing strong coordination with sulfide products. These effects combine to increase the catalytic performance of ruthenium phosphide NPs. These results demonstrate that P-alloying is an efficient method to improve the metal NP catalysis for diverse organic synthesis.
format Online
Article
Text
id pubmed-8889554
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-88895542022-03-03 Phosphorus-Alloying as a Powerful Method for Designing Highly Active and Durable Metal Nanoparticle Catalysts for the Deoxygenation of Sulfoxides: Ligand and Ensemble Effects of Phosphorus Ishikawa, Hiroya Yamaguchi, Sho Nakata, Ayako Nakajima, Kiyotaka Yamazoe, Seiji Yamasaki, Jun Mizugaki, Tomoo Mitsudome, Takato JACS Au [Image: see text] The modification of metal nanoparticles (NPs) by incorporating additional metals is a key technique for developing novel catalysts. However, the effects of incorporating nonmetals into metal NPs have not been widely explored, particularly in the field of organic synthesis. In this study, we demonstrate that phosphorus (P)-alloying significantly increases the activity of precious metal NPs for the deoxygenation of sulfoxides into sulfides. In particular, ruthenium phosphide NPs exhibit an excellent catalytic activity and high durability against sulfur-poisoning, outperforming conventional catalysts. Various sulfoxides, including drug intermediates, were deoxygenated to sulfides with excellent yields. Detailed investigations into the structure–activity relationship revealed that P-alloying plays a dual role: it establishes a ligand effect on the electron transfer from Ru to P, facilitating the production of active hydrogen species, and has an ensemble effect on the formation of the Ru–P bond, preventing strong coordination with sulfide products. These effects combine to increase the catalytic performance of ruthenium phosphide NPs. These results demonstrate that P-alloying is an efficient method to improve the metal NP catalysis for diverse organic synthesis. American Chemical Society 2022-01-11 /pmc/articles/PMC8889554/ /pubmed/35252991 http://dx.doi.org/10.1021/jacsau.1c00461 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Ishikawa, Hiroya
Yamaguchi, Sho
Nakata, Ayako
Nakajima, Kiyotaka
Yamazoe, Seiji
Yamasaki, Jun
Mizugaki, Tomoo
Mitsudome, Takato
Phosphorus-Alloying as a Powerful Method for Designing Highly Active and Durable Metal Nanoparticle Catalysts for the Deoxygenation of Sulfoxides: Ligand and Ensemble Effects of Phosphorus
title Phosphorus-Alloying as a Powerful Method for Designing Highly Active and Durable Metal Nanoparticle Catalysts for the Deoxygenation of Sulfoxides: Ligand and Ensemble Effects of Phosphorus
title_full Phosphorus-Alloying as a Powerful Method for Designing Highly Active and Durable Metal Nanoparticle Catalysts for the Deoxygenation of Sulfoxides: Ligand and Ensemble Effects of Phosphorus
title_fullStr Phosphorus-Alloying as a Powerful Method for Designing Highly Active and Durable Metal Nanoparticle Catalysts for the Deoxygenation of Sulfoxides: Ligand and Ensemble Effects of Phosphorus
title_full_unstemmed Phosphorus-Alloying as a Powerful Method for Designing Highly Active and Durable Metal Nanoparticle Catalysts for the Deoxygenation of Sulfoxides: Ligand and Ensemble Effects of Phosphorus
title_short Phosphorus-Alloying as a Powerful Method for Designing Highly Active and Durable Metal Nanoparticle Catalysts for the Deoxygenation of Sulfoxides: Ligand and Ensemble Effects of Phosphorus
title_sort phosphorus-alloying as a powerful method for designing highly active and durable metal nanoparticle catalysts for the deoxygenation of sulfoxides: ligand and ensemble effects of phosphorus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8889554/
https://www.ncbi.nlm.nih.gov/pubmed/35252991
http://dx.doi.org/10.1021/jacsau.1c00461
work_keys_str_mv AT ishikawahiroya phosphorusalloyingasapowerfulmethodfordesigninghighlyactiveanddurablemetalnanoparticlecatalystsforthedeoxygenationofsulfoxidesligandandensembleeffectsofphosphorus
AT yamaguchisho phosphorusalloyingasapowerfulmethodfordesigninghighlyactiveanddurablemetalnanoparticlecatalystsforthedeoxygenationofsulfoxidesligandandensembleeffectsofphosphorus
AT nakataayako phosphorusalloyingasapowerfulmethodfordesigninghighlyactiveanddurablemetalnanoparticlecatalystsforthedeoxygenationofsulfoxidesligandandensembleeffectsofphosphorus
AT nakajimakiyotaka phosphorusalloyingasapowerfulmethodfordesigninghighlyactiveanddurablemetalnanoparticlecatalystsforthedeoxygenationofsulfoxidesligandandensembleeffectsofphosphorus
AT yamazoeseiji phosphorusalloyingasapowerfulmethodfordesigninghighlyactiveanddurablemetalnanoparticlecatalystsforthedeoxygenationofsulfoxidesligandandensembleeffectsofphosphorus
AT yamasakijun phosphorusalloyingasapowerfulmethodfordesigninghighlyactiveanddurablemetalnanoparticlecatalystsforthedeoxygenationofsulfoxidesligandandensembleeffectsofphosphorus
AT mizugakitomoo phosphorusalloyingasapowerfulmethodfordesigninghighlyactiveanddurablemetalnanoparticlecatalystsforthedeoxygenationofsulfoxidesligandandensembleeffectsofphosphorus
AT mitsudometakato phosphorusalloyingasapowerfulmethodfordesigninghighlyactiveanddurablemetalnanoparticlecatalystsforthedeoxygenationofsulfoxidesligandandensembleeffectsofphosphorus