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Patterning the consecutive Pd₃ to Pd₁ on Pd₂ surface via temperature-promoted reactive metal-support interaction

Authors :
Niu, Yiming
Wang, Yongzhao
Chen, Junnan
Li, Shiyan
Huang, Xing
Willinger, Marc
Zhang, Wei
Liu, Yuefeng
Zhang, Bingsen
Source :
Science Advances, 8 (49)
Publication Year :
2022
Publisher :
ETH Zurich, 2022.

Abstract

Atom-by-atom control of a catalyst surface is a central yet challenging topic in heterogeneous catalysis, which enables precisely confined adsorption and oriented approach of reactant molecules. Here, exposed surfaces with either consecutive Pd trimers (Pd3) or isolated Pd atoms (Pd1) are architected for Pd2Ga intermetallic nanoparticles (NPs) using reactive metal-support interaction (RMSI). At elevated temperatures under hydrogen, in situ atomic-scale transmission electron microscopy directly visualizes the refacetting of Pd2Ga NPs from energetically favorable (013)/(020) facets to (011)/(002). Infrared spectroscopy and acetylene hydrogenation reaction complementarily confirm the evolution from consecutive Pd3 to Pd1 sites of Pd2Ga catalysts with the concurrent fingerprinting CO adsorption and featured reactivities. Through theoretical calculations and modeling, we reveal that the restructured Pd2Ga surface results from the preferential arrangement of additionally reduced Ga atoms on the surface. Our work provides previously unidentified mechanistic insight into temperature-promoted RMSI and possible solutions to control and rearrange the surface atoms of supported intermetallic catalyst.<br />Science Advances, 8 (49)<br />ISSN:2375-2548

Details

Language :
English
ISSN :
23752548
Database :
OpenAIRE
Journal :
Science Advances, 8 (49)
Accession number :
edsair.doi.dedup.....5d3ea0f3bb16e3434bf4eb0342da4089
Full Text :
https://doi.org/10.3929/ethz-b-000588487