Evidence for heterogeneous Sonogashira coupling of phenylacetylene and iodobenzene catalyzed by well defined rhodium nanoparticles.

Sonogashira coupling of phenylacetylene with iodobenzene has been studied in the presence of metallic Rh nanoparticle catalysts and found to occur via a surface-mediated heterogeneous route. Homogeneous catalytic processes due to Rh species that may leach into solution were barely detectable within...

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Main Authors: Kanuru, V, Humphrey, S, Kyffin, J, Jefferson, D, Burton, J, Armbrüster, M, Lambert, R
Format: Journal article
Language:English
Published: 2009
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author Kanuru, V
Humphrey, S
Kyffin, J
Jefferson, D
Burton, J
Armbrüster, M
Lambert, R
author_facet Kanuru, V
Humphrey, S
Kyffin, J
Jefferson, D
Burton, J
Armbrüster, M
Lambert, R
author_sort Kanuru, V
collection OXFORD
description Sonogashira coupling of phenylacetylene with iodobenzene has been studied in the presence of metallic Rh nanoparticle catalysts and found to occur via a surface-mediated heterogeneous route. Homogeneous catalytic processes due to Rh species that may leach into solution were barely detectable within the sensitivity of our experiments. Moreover, larger (8 nm) nanoparticles were found to be much better catalysts than very small ones (2 nm), which is consistent with the hypothesis that steric limitations adversely affect the efficiency of the latter.
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spelling oxford-uuid:d7bf950e-99d8-49f2-8c9a-8c491a4724322022-03-27T08:43:18ZEvidence for heterogeneous Sonogashira coupling of phenylacetylene and iodobenzene catalyzed by well defined rhodium nanoparticles.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:d7bf950e-99d8-49f2-8c9a-8c491a472432EnglishSymplectic Elements at Oxford2009Kanuru, VHumphrey, SKyffin, JJefferson, DBurton, JArmbrüster, MLambert, RSonogashira coupling of phenylacetylene with iodobenzene has been studied in the presence of metallic Rh nanoparticle catalysts and found to occur via a surface-mediated heterogeneous route. Homogeneous catalytic processes due to Rh species that may leach into solution were barely detectable within the sensitivity of our experiments. Moreover, larger (8 nm) nanoparticles were found to be much better catalysts than very small ones (2 nm), which is consistent with the hypothesis that steric limitations adversely affect the efficiency of the latter.
spellingShingle Kanuru, V
Humphrey, S
Kyffin, J
Jefferson, D
Burton, J
Armbrüster, M
Lambert, R
Evidence for heterogeneous Sonogashira coupling of phenylacetylene and iodobenzene catalyzed by well defined rhodium nanoparticles.
title Evidence for heterogeneous Sonogashira coupling of phenylacetylene and iodobenzene catalyzed by well defined rhodium nanoparticles.
title_full Evidence for heterogeneous Sonogashira coupling of phenylacetylene and iodobenzene catalyzed by well defined rhodium nanoparticles.
title_fullStr Evidence for heterogeneous Sonogashira coupling of phenylacetylene and iodobenzene catalyzed by well defined rhodium nanoparticles.
title_full_unstemmed Evidence for heterogeneous Sonogashira coupling of phenylacetylene and iodobenzene catalyzed by well defined rhodium nanoparticles.
title_short Evidence for heterogeneous Sonogashira coupling of phenylacetylene and iodobenzene catalyzed by well defined rhodium nanoparticles.
title_sort evidence for heterogeneous sonogashira coupling of phenylacetylene and iodobenzene catalyzed by well defined rhodium nanoparticles
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