| Literature DB >> 33411541 |
Dan Yu1, Lei Gao1, Tulai Sun2, Jingchun Guo1, Yuliang Yuan1, Jiawei Zhang1, Mengfan Li1, Xingxing Li3, Maochang Liu4, Chao Ma1, Qinghua Liu3, Anlian Pan1, Jinlong Yang3, Hongwen Huang1.
Abstract
Synthesis of the unconventional phase of noble metal nanocrystals may create new opportunities in exploring intriguing physicochemical properties but remains challenging. In the research field of thin film growth, the interface strain offers a general driving force to stabilize the metastable phase of epitaxial film. Herein we extend this concept to the field of noble metal nanocrystals and report the solution synthesis of metastable face-centered tetragonal Au that has not been discovered before. The successful synthesis relies on the formation of intermetallic AuCu3@Au core-shell structure, where the interface strain stabilizes the metastable fct Au overlayer. Compared with the face-centered cubic Au counterpart, the metastable fct Au shows greatly improved catalytic activity toward CO2 reduction to CO. The density functional theory calculations and spectroscopic studies reveal that the metastable fct Au upshifts the d-band center, which lowers the energy barrier of key intermediate COOH* formation and thus facilitates the reaction kinetics.Entities:
Keywords: CO2 electroreduction; face-centered tetragonal gold; interface strain; metastable phase
Year: 2021 PMID: 33411541 DOI: 10.1021/acs.nanolett.0c04051
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189