New environmentally friendly catalysts containing Pd-interstitial carbon made from Pd-glucose precursors for ultraselective hydrogenations in the liquid phase.

We report a novel preparation of a Pd nanocatalyst modified with subsurface C via blending a glucose precursor at the molecular level: the catalyst is demonstrated for the first time to be stereoselective in the hydrogenation of alkynes to cis-alkenes in the liquid phase.

Detalles Bibliográficos
Main Authors: Chan, C, Xie, Y, Cailuo, N, Yu, K, Cookson, J, Bishop, P, Tsang, S
Formato: Journal article
Idioma:English
Publicado: 2011
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author Chan, C
Xie, Y
Cailuo, N
Yu, K
Cookson, J
Bishop, P
Tsang, S
author_facet Chan, C
Xie, Y
Cailuo, N
Yu, K
Cookson, J
Bishop, P
Tsang, S
author_sort Chan, C
collection OXFORD
description We report a novel preparation of a Pd nanocatalyst modified with subsurface C via blending a glucose precursor at the molecular level: the catalyst is demonstrated for the first time to be stereoselective in the hydrogenation of alkynes to cis-alkenes in the liquid phase.
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spelling oxford-uuid:bbd19e2b-98da-437a-9cba-ad0bf8bd9c1c2022-03-27T05:19:48ZNew environmentally friendly catalysts containing Pd-interstitial carbon made from Pd-glucose precursors for ultraselective hydrogenations in the liquid phase.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:bbd19e2b-98da-437a-9cba-ad0bf8bd9c1cEnglishSymplectic Elements at Oxford2011Chan, CXie, YCailuo, NYu, KCookson, JBishop, PTsang, SWe report a novel preparation of a Pd nanocatalyst modified with subsurface C via blending a glucose precursor at the molecular level: the catalyst is demonstrated for the first time to be stereoselective in the hydrogenation of alkynes to cis-alkenes in the liquid phase.
spellingShingle Chan, C
Xie, Y
Cailuo, N
Yu, K
Cookson, J
Bishop, P
Tsang, S
New environmentally friendly catalysts containing Pd-interstitial carbon made from Pd-glucose precursors for ultraselective hydrogenations in the liquid phase.
title New environmentally friendly catalysts containing Pd-interstitial carbon made from Pd-glucose precursors for ultraselective hydrogenations in the liquid phase.
title_full New environmentally friendly catalysts containing Pd-interstitial carbon made from Pd-glucose precursors for ultraselective hydrogenations in the liquid phase.
title_fullStr New environmentally friendly catalysts containing Pd-interstitial carbon made from Pd-glucose precursors for ultraselective hydrogenations in the liquid phase.
title_full_unstemmed New environmentally friendly catalysts containing Pd-interstitial carbon made from Pd-glucose precursors for ultraselective hydrogenations in the liquid phase.
title_short New environmentally friendly catalysts containing Pd-interstitial carbon made from Pd-glucose precursors for ultraselective hydrogenations in the liquid phase.
title_sort new environmentally friendly catalysts containing pd interstitial carbon made from pd glucose precursors for ultraselective hydrogenations in the liquid phase
work_keys_str_mv AT chanc newenvironmentallyfriendlycatalystscontainingpdinterstitialcarbonmadefrompdglucoseprecursorsforultraselectivehydrogenationsintheliquidphase
AT xiey newenvironmentallyfriendlycatalystscontainingpdinterstitialcarbonmadefrompdglucoseprecursorsforultraselectivehydrogenationsintheliquidphase
AT cailuon newenvironmentallyfriendlycatalystscontainingpdinterstitialcarbonmadefrompdglucoseprecursorsforultraselectivehydrogenationsintheliquidphase
AT yuk newenvironmentallyfriendlycatalystscontainingpdinterstitialcarbonmadefrompdglucoseprecursorsforultraselectivehydrogenationsintheliquidphase
AT cooksonj newenvironmentallyfriendlycatalystscontainingpdinterstitialcarbonmadefrompdglucoseprecursorsforultraselectivehydrogenationsintheliquidphase
AT bishopp newenvironmentallyfriendlycatalystscontainingpdinterstitialcarbonmadefrompdglucoseprecursorsforultraselectivehydrogenationsintheliquidphase
AT tsangs newenvironmentallyfriendlycatalystscontainingpdinterstitialcarbonmadefrompdglucoseprecursorsforultraselectivehydrogenationsintheliquidphase