Restructuring of the Pt3Sn(111) surfaces induced by atomic and molecular oxygen from first principles.
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Summary
The surface restructuring of Pt(3)Sn(111) induced by oxygen chemisorption is examined by means of density-functional theory calculations and a peculiar surface restructuring, involving the formation of a network of SnO(2) species, appears for large oxygen coverage.
- Type
- dissertation
- Published
- 2009-03-28
- Cited by
- 8
- References
- 38
- Access
- Open access
- OpenAlex
- https://openalex.org/W19334881
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:21039243
Keywords
Olmesartan, Chemistry, Angiotensin II receptor type 1, Dipalmitoylphosphatidylcholine, Mechanism of action
References
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- Precursor-mediated adsorption of oxygen on the (111) surfaces of platinum-group metals
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- Anode materials for low-temperature fuel cells : A density functional theory study
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- Quantum-chemical calculations of CO and OH interacting with bimetallic surfaces
- Mechanism for the electrooxidation of water to OH and O bonded to platinum: quantum chemical theory
- A High Pressure PM-IRRAS Study of CO and O2 Coadsorption and Reactivity on PtSn Alloy Surfaces
- Oxidation of ordered Sn/Pt(111) surface alloys and thermal stability of the oxides formed
- Domain structure, segregation and morphology of the Pt3Sn(111) surface
- CO and O coadsorption on Pt3Sn studied by DFT: Changes in the adsorptive properties of the surface with alloying and coverage
- A theoretical study of CO adsorption on Pt, Ru and Pt–M (M=Ru, Sn, Ge) clusters
Cited by
- Mediatory role of tin in the catalytic performance of tailored platinum-tin alloy surfaces for carbon monoxide oxidation
- Preferential CO oxidation in a large excess of hydrogen on Pt3Sn surfaces
- Promoter Effect of Early Stage Grown Surface Oxides: A Near-Ambient-Pressure XPS Study of CO Oxidation on PtSn Bimetallics.
- Density Functional Theory Study on Propane and Propene Adsorption on Pt(111) and PtSn Alloy Surfaces
- Enhanced activity of ethanol oxidation reaction on PtM (M=Au, Ag and Sn): The importance of oxophilicity and surface oxygen containing species
- Achievements and Expectations in the Field of Computational Heterogeneous Catalysis in an Innovation Context
- Oxidation of a Platinum–Tin Alloy Surface during Catalytic CO Oxidation
- In-situ reconstruction of electrocatalysts for efficient energy and environmental electrocatalytic reactions
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