Issue 82, 2021

Gold nanoparticles with tailored size through ligand modification for catalytic applications

Abstract

The active sites of catalysts can be tuned by using appropriate organic moieties. Here, we describe a facile approach to synthesise gold nanoparticles (AuNPs) using various Au(I) precursors. The core size of these AuNPs can be precisely tailored by varying the steric hindrance imposed by bound ligands. An interesting relationship is deduced that correlates the steric hindrance around the metal to the final size of the nanoparticles. The synthesised AuNPs are immobilised onto TS-1 zeolite (Au/TS-1) with minimal change in the final size of the AuNPs. The catalytic performance of Au/TS-1 catalyst is evaluated for the direct gas phase epoxidation of propylene with hydrogen and oxygen, an environmentally friendly route to produce propylene oxide. The results indicate that smaller AuNPs exhibit enhanced catalytic activity and selectivity. Furthermore, this synthetic approach is beneficial when tailored synthesis of gold nanoparticles of specific sizes is required.

Graphical abstract: Gold nanoparticles with tailored size through ligand modification for catalytic applications

Supplementary files

Article information

Article type
Communication
Submitted
31 Jul 2021
Accepted
18 Sep 2021
First published
24 Sep 2021
This article is Open Access
Creative Commons BY license

Chem. Commun., 2021,57, 10775-10778

Gold nanoparticles with tailored size through ligand modification for catalytic applications

N. Kapil, F. Cardinale, T. Weissenberger, P. Trogadas, T. A. Nijhuis, M. M. Nigra and M. Coppens, Chem. Commun., 2021, 57, 10775 DOI: 10.1039/D1CC04165G

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