Superior electrocatalytic activity of mesoporous Au film templated from diblock copolymer micelles

Electrochemical Synthesis 540 01 natural sciences Size-Controlled Synthesis Bimetallic Nanodendrites 0104 chemical sciences High-Index Facets Nanostructures Synthesis Platinum Nanoparticles Methanol Electrooxidation Gold Nanoparticles Tunable Pore Sizes Alkaline Media
DOI: 10.1007/s12274-016-1068-z Publication Date: 2016-04-21T10:14:07Z
ABSTRACT
Mesoporous Au films consisting of a network of interconnected Au ligaments around ultra-large pores were found to exhibit a promising electrocatalytic activity towards sluggish reactions. Mesoporous Au films with pore sizes up to 25 nm were successfully fabricated using a polymeric micelle approach. A superior catalytic activity of the mesoporous Au films towards methanol oxidation was confirmed, which was thoroughly analyzed and compared with that of other Au materials. An intrinsic investigation on the high catalytic activity revealed that the superior performance of the as-prepared mesoporous Au film was related to its unique atomic structures around the mesopores with well-crystallized facets and several step/kink sites on the Au surfaces. These findings showcase a strategic and feasible design for preparing highly active Au-based catalysts that could be used as promising candidates in electrocatalytic applications.
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