We modelled with Density Functional Theory (DFT) an Al-Cu alloy covered with a passive film, with several Cu concentrations (from the limit of the isolated atom to the monolayer) at the interface with the oxide, as well as Guinier-Preston 1 (GP1) zones. At low (respectively high) concentration, Cu segregates in the first (respectively second) metal layer underneath the passive film. The Cu monolayer is the most stable configuration (−0.37 eV/Cu atom). GP1 zones were modelled, with a three-copper atom cluster in the alloy. The GP1 zone is slightly favoured with respect to the Cu monolayer under the oxide film. A low (respectively high) Cu concentration induces an electronic workfunction increase (respectively decrease) by 0.3 eV (respectivel...
The atomic structure of bulk crystal of aluminium and the precipitate phase $\theta^\prime$ connecte...
The electronic structure and bonding of Cu to AI203 has been studied both theoretically and experime...
Structures and energetics of various, plausible realizations of the Al2O3(0001)/Cu(111) interface ha...
We modelled with Density Functional Theory (DFT) an Al-Cu alloy covered with a passive film, with se...
International audienceThe structural and electronic properties of Cu segregation in aluminum are stu...
International audienceThe structural and electronic properties of Cu segregation in aluminum are stu...
The structural and electronic properties of Cu segregation in aluminum are studied in the framework ...
In many applications, metallic copper can be covered by an ultrathin native or a passive oxide film ...
Surface segregation effects on polycrystalline Au-Cu alloys (Au 0.80Cu 0.20, Au 0.85Cu 0.15 and Au 0...
The continuous downward scaling of electronic devices has renewed attention on the importance of the...
The Cu interactions with the Al–Mg–Si alloy main hardening phase β″ are investigated in atomic scale...
International audienceThe surface chemistry associated with the synthesis of energetic nanolaminates...
International audienceThe surface chemistry associated with the synthesis of energetic nanolaminates...
International audienceThe surface chemistry associated with the synthesis of energetic nanolaminates...
The atomic structure of bulk crystal of aluminium and the precipitate phase $\theta^\prime$ connecte...
The atomic structure of bulk crystal of aluminium and the precipitate phase $\theta^\prime$ connecte...
The electronic structure and bonding of Cu to AI203 has been studied both theoretically and experime...
Structures and energetics of various, plausible realizations of the Al2O3(0001)/Cu(111) interface ha...
We modelled with Density Functional Theory (DFT) an Al-Cu alloy covered with a passive film, with se...
International audienceThe structural and electronic properties of Cu segregation in aluminum are stu...
International audienceThe structural and electronic properties of Cu segregation in aluminum are stu...
The structural and electronic properties of Cu segregation in aluminum are studied in the framework ...
In many applications, metallic copper can be covered by an ultrathin native or a passive oxide film ...
Surface segregation effects on polycrystalline Au-Cu alloys (Au 0.80Cu 0.20, Au 0.85Cu 0.15 and Au 0...
The continuous downward scaling of electronic devices has renewed attention on the importance of the...
The Cu interactions with the Al–Mg–Si alloy main hardening phase β″ are investigated in atomic scale...
International audienceThe surface chemistry associated with the synthesis of energetic nanolaminates...
International audienceThe surface chemistry associated with the synthesis of energetic nanolaminates...
International audienceThe surface chemistry associated with the synthesis of energetic nanolaminates...
The atomic structure of bulk crystal of aluminium and the precipitate phase $\theta^\prime$ connecte...
The atomic structure of bulk crystal of aluminium and the precipitate phase $\theta^\prime$ connecte...
The electronic structure and bonding of Cu to AI203 has been studied both theoretically and experime...
Structures and energetics of various, plausible realizations of the Al2O3(0001)/Cu(111) interface ha...