| Literature DB >> 18942789 |
Dusan S Strmcnik1, Dusan V Tripkovic, Dennis van der Vliet, Kee-Chul Chang, Vladimir Komanicky, Hoydoo You, Goran Karapetrov, Jeffrey P Greeley, Vojislav R Stamenkovic, Nenad M Marković.
Abstract
The development of electrocatalytic materials of enhanced activity and efficiency through careful manipulation, at the atomic scale, of the catalyst surface structure has long been a goal of electrochemists. To accomplish this ambitious objective, it would be necessary both to obtain a thorough understanding of the relationship between the atomic-level surface structure and the catalytic properties and to develop techniques to synthesize and stabilize desired active sites. In this contribution, we present a combined experimental and theoretical study in which we demonstrate how this approach can be used to develop novel, platinum-based electrocatalysts for the CO electrooxidation reaction in CO(g)-saturated solution; the catalysts show activities superior to any pure-metal catalysts previously known. We use a broad spectrum of electrochemical surface science techniques to synthesize and rigorously characterize the catalysts, which are composed of adisland-covered platinum surfaces, and we show that highly undercoordinated atoms on the adislands themselves are responsible for the remarkable activity of these materials.Entities:
Year: 2008 PMID: 18942789 DOI: 10.1021/ja8032185
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419