| Literature DB >> 27345872 |
Zhanxi Fan1, Zhimin Luo1, Ye Chen1, Jie Wang1, Bing Li2, Yun Zong2, Hua Zhang1.
Abstract
The high-yield synthesis of 4H/face-centered cubic (fcc)-Au@Ir core-shell nanoribbons (NRBs) is achieved via the direct growth of Ir on 4H Au NRBs under ambient conditions. Importantly, this method can be used to synthesize 4H/fcc-Au@Os and 4H/fcc-Au@IrOs core-shell NRBs. Significantly, the obtained 4H/fcc-Au@Ir core-shell NRBs demonstrate an exceptional electrocatalytic activity toward the oxygen evolution reaction under acidic condition, which is much higher than that of the commercial Ir/C catalyst.Entities:
Keywords: catalysis; core-shell nanostructures; crystal structure control; noble metals; oxygen evolution reaction
Year: 2016 PMID: 27345872 DOI: 10.1002/smll.201601787
Source DB: PubMed Journal: Small ISSN: 1613-6810 Impact factor: 13.281