Pt\u2013Sn alloys play an important role as oxygen reduction reaction (ORR) catalysts in fuel cell technology both for their role in rationalizing the mechanism responsible for the better performances of bimetallic catalysts and for their practical applications. Here we present a complete experimental and theoretical study on the geometric and electronic structure of a (4 71) termination over a Pt3Sn near-surface ordered alloy obtained by depositing Sn on the Pt(110) and subsequent annealing. LEED and STM measurements combined with DFT simulations, allow us to determine the atomistic structure of this phase, and to rationalize the peculiar dependence of its STM pattern on the applied bias and the compositional order in deep layers. Both pho...
Surface and subsurface structures of PtSn surface alloy on Pt(111) were determined using in situ sca...
Atomic and electronic structure investigations of the substitutional Au2Sn surface alloy formed on A...
The first two layers of Sn deposited on Pd(lll) at 300 K grow in layer-by-layer fashion after which ...
Pt–Sn alloys play an important role as oxygen reduction reaction (ORR) catalysts in fuel cell techno...
UHV evaporation of Sn on (1 x 2) Pt(110), followed by UHV annealing, provides three different PtSn/P...
Increasing the efficiency and stability of bimetallic electro catalysts is particularly important fo...
Using angle-resolved photoemission spectroscopy, we show direct evidence for charge transfer between...
The adsorption of oxygen on the (111) surface of the (formula presented) alloy was studied by means ...
The adsorption of oxygen on the Pt3Sns110d alloy surface was studied by means of scanning tunneling ...
International audienceThe understanding of the structure and properties of γ−Al 2 O 3 supported plat...
Based on the density functional theory, we have calculated an atomic and electronic structures of th...
Using spot-profile analysis low-energy electron diffraction, we have studied the domain structure an...
Metal alloying is commonly used as a design strategy for catalyst optimization. The mechanistic unde...
For large-scale applications of hydrogen fuel cells, the sluggish kinetics of the oxygen reduction r...
International audienceA complementary experimental and theoretical study of the alloying effects of ...
Surface and subsurface structures of PtSn surface alloy on Pt(111) were determined using in situ sca...
Atomic and electronic structure investigations of the substitutional Au2Sn surface alloy formed on A...
The first two layers of Sn deposited on Pd(lll) at 300 K grow in layer-by-layer fashion after which ...
Pt–Sn alloys play an important role as oxygen reduction reaction (ORR) catalysts in fuel cell techno...
UHV evaporation of Sn on (1 x 2) Pt(110), followed by UHV annealing, provides three different PtSn/P...
Increasing the efficiency and stability of bimetallic electro catalysts is particularly important fo...
Using angle-resolved photoemission spectroscopy, we show direct evidence for charge transfer between...
The adsorption of oxygen on the (111) surface of the (formula presented) alloy was studied by means ...
The adsorption of oxygen on the Pt3Sns110d alloy surface was studied by means of scanning tunneling ...
International audienceThe understanding of the structure and properties of γ−Al 2 O 3 supported plat...
Based on the density functional theory, we have calculated an atomic and electronic structures of th...
Using spot-profile analysis low-energy electron diffraction, we have studied the domain structure an...
Metal alloying is commonly used as a design strategy for catalyst optimization. The mechanistic unde...
For large-scale applications of hydrogen fuel cells, the sluggish kinetics of the oxygen reduction r...
International audienceA complementary experimental and theoretical study of the alloying effects of ...
Surface and subsurface structures of PtSn surface alloy on Pt(111) were determined using in situ sca...
Atomic and electronic structure investigations of the substitutional Au2Sn surface alloy formed on A...
The first two layers of Sn deposited on Pd(lll) at 300 K grow in layer-by-layer fashion after which ...