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Direct Growth of Highly Strained Pt Islands on Branched Ni Nanoparticles for Improved Hydrogen Evolution Reaction Activity

Authors :
Alinezhad, A
Gloag, L
Benedetti, TM
Cheong, S
Webster, RF
Roelsgaard, M
Iversen, BB
Schuhmann, W
Gooding, JJ
Tilley, RD
Alinezhad, A
Gloag, L
Benedetti, TM
Cheong, S
Webster, RF
Roelsgaard, M
Iversen, BB
Schuhmann, W
Gooding, JJ
Tilley, RD
Publication Year :
2019

Abstract

The direct growth of Pt islands on lattice mismatched Ni nanoparticles is a major synthetic challenge and a promising strategy to create highly strained Pt atoms for electrocatalysis. By using very mild reaction conditions, Pt islands with tunable strain were formed directly on Ni branched particles. The highly strained 1.9 nm Pt-island on branched Ni nanoparticles exhibited high specific activity and the highest mass activity for hydrogen evolution (HER) in a pH 13 electrolyte. These results show the ability to synthetically tune the size of the Pt islands to control the strain to give higher HER activity.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1237253798
Document Type :
Electronic Resource