Issue 42, 2015

Mechanistic interpretation of selective catalytic hydrogenation and isomerization of alkenes and dienes by ligand deactivated Pd nanoparticles

Abstract

Unsupported thiolate-capped palladium nanoparticle catalysts are found to be highly substrate-selective for alkene hydrogenation and isomerization. Steric and poisoning effects from thiolate ligands on the nanoparticle surface control reactivity and selectivity by influencing alkene adsorption and directing either di-σ or mono-σ bond formation. The presence of overlapping p orbitals and α protons in alkenes greatly influences the catalytic properties of deactivated palladium nanoparticles leading to easily predictable hydrogenation or isomerization products.

Graphical abstract: Mechanistic interpretation of selective catalytic hydrogenation and isomerization of alkenes and dienes by ligand deactivated Pd nanoparticles

Supplementary files

Article information

Article type
Paper
Submitted
29 Jul 2015
Accepted
28 Sep 2015
First published
05 Oct 2015
This article is Open Access
Creative Commons BY-NC license

Nanoscale, 2015,7, 17786-17790

Author version available

Mechanistic interpretation of selective catalytic hydrogenation and isomerization of alkenes and dienes by ligand deactivated Pd nanoparticles

J. S. Zhu and Y. Shon, Nanoscale, 2015, 7, 17786 DOI: 10.1039/C5NR05090A

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