Issue 40, 2021

Electrochemical synthesis of core–shell nanoparticles by seed-mediated selective deposition

Abstract

Conventional solvothermal synthesis of core–shell nanoparticles results in them being covered with surfactant molecules for size control and stabilization, undermining their practicality as electrocatalysts. Here, we report an electrochemical method for the synthesis of core–shell nanoparticles directly on electrodes, free of surfactants. By implementation of selective electrodeposition on gold cores, 1st-row transition metal shells were constructed with facile and precise thickness control. This type of metal-on-metal core–shell synthesis by purely electrochemical means is the first of its kind. The applicability of the nanoparticle decorated electrodes was demonstrated by alkaline oxygen evolution catalysis, during which the Au–Ni example displayed stable catalysis with low overpotential.

Graphical abstract: Electrochemical synthesis of core–shell nanoparticles by seed-mediated selective deposition

Supplementary files

Article information

Article type
Edge Article
Submitted
03 Jul 2021
Accepted
22 Aug 2021
First published
08 Sep 2021
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2021,12, 13557-13563

Electrochemical synthesis of core–shell nanoparticles by seed-mediated selective deposition

J. H. Park, S. Jin, E. Lee and H. S. Ahn, Chem. Sci., 2021, 12, 13557 DOI: 10.1039/D1SC03625D

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