| Literature DB >> 23247177 |
Eugen S Andreiadis1, Pierre-André Jacques, Phong D Tran, Adeline Leyris, Murielle Chavarot-Kerlidou, Bruno Jousselme, Muriel Matheron, Jacques Pécaut, Serge Palacin, Marc Fontecave, Vincent Artero.
Abstract
The viability of a hydrogen economy depends on the design of efficient catalytic systems based on earth-abundant elements. Innovative breakthroughs for hydrogen evolution based on molecular tetraimine cobalt compounds have appeared in the past decade. Here we show that such a diimine-dioxime cobalt catalyst can be grafted to the surface of a carbon nanotube electrode. The resulting electrocatalytic cathode material mediates H(2) generation (55,000 turnovers in seven hours) from fully aqueous solutions at low-to-medium overpotentials. This material is remarkably stable, which allows extensive cycling with preservation of the grafted molecular complex, as shown by electrochemical studies, X-ray photoelectron spectroscopy and scanning electron microscopy. This clearly indicates that grafting provides an increased stability to these cobalt catalysts, and suggests the possible application of these materials in the development of technological devices.Entities:
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Year: 2012 PMID: 23247177 DOI: 10.1038/nchem.1481
Source DB: PubMed Journal: Nat Chem ISSN: 1755-4330 Impact factor: 24.427