Issue 22, 2016

Hydrogen adsorption-mediated synthesis of concave Pt nanocubes and their enhanced electrocatalytic activity

Abstract

Concave nanocubes are enclosed by high-index facets and have negative curvature; they are expected to have enhanced reactivity, as compared to nanocubes with flat surfaces. Herein, we propose and demonstrate a new strategy for the synthesis of concave Pt nanocubes with {hk0} high-index facets, by using a hydrogen adsorption-mediated electrochemical square-wave potential method. It was found that Pt atoms prefer to deposit on edge sites rather than terrace sites on Pt surfaces with intensive hydrogen adsorption, resulting in the formation of concave structures. The as-prepared concave Pt nanocubes exhibit enhanced catalytic activity and stability towards oxidation of ethanol and formic acid in acidic solutions, compared to commercial Pt/C catalysts.

Graphical abstract: Hydrogen adsorption-mediated synthesis of concave Pt nanocubes and their enhanced electrocatalytic activity

Supplementary files

Article information

Article type
Paper
Submitted
21 Mar 2016
Accepted
03 May 2016
First published
04 May 2016

Nanoscale, 2016,8, 11559-11564

Hydrogen adsorption-mediated synthesis of concave Pt nanocubes and their enhanced electrocatalytic activity

B. Lu, J. Du, T. Sheng, N. Tian, J. Xiao, L. Liu, B. Xu, Z. Zhou and S. Sun, Nanoscale, 2016, 8, 11559 DOI: 10.1039/C6NR02349E

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