| Literature DB >> 28151572 |
Xiaoqiang Wu1, Fuyi Chen1, Nan Zhang1, Yimin Lei1, Yachao Jin1, Adnan Qaseem1, Roy L Johnston2.
Abstract
The electrocatalytic activity of Pt-based alloys exhibits a strong dependence on their electronic structures, but a relationship between electronic structure and oxygen reduction reaction (ORR) activity in Ag-based alloys is still not clear. Here, a vapor deposition based approach is reported for the preparation of Ag75 M25 (M = Cu, Co, Fe, and In) and Agx Cu100-x (x = 0, 25, 45, 50, 55, 75, 90, and 100) nanocatalysts and their electronic structures are determined by valence band spectra. The relationship of the d-band center and ORR activity exhibits volcano-shape behaviors, where the maximum catalytic activity is obtained for Ag75 Cu25 alloys. The ORR enhancement of Ag75 Cu25 alloys originates from the 0.12 eV upshift in d-band center relative to pure Ag, which is different from the downshift in the d-band center in Pt-based alloys. The activity trend for these Ag75 M25 alloys is in the order of Ag75 Cu25 > Ag75 Fe25 > Ag75 Co25 . These results provide an insight to understand the activity and stability enhancement of Ag75 Cu25 and Ag50 Cu50 catalysts by alloying.Entities:
Keywords: Ag-based alloy; d-band center; electrocatalysts; electronic structure; oxygen reduction
Year: 2017 PMID: 28151572 DOI: 10.1002/smll.201603387
Source DB: PubMed Journal: Small ISSN: 1613-6810 Impact factor: 13.281