The structures and stabilities of alkaline earth metal peroxides XO2 (X = Ca, Be, Mg) were studied using an adaptive genetic algorithm (GA) for global structure optimization in combination with first-principles calculations. From the adaptive GA search, we obtained an orthorhombic structure for CaO2 with 12 atoms in the unit cell, which is energetically more favorable than the previously proposed structures. Reaction energy of the decomposition CaO2 → CaO + 1/2O2 determined by density functional theory (DFT) calculation shows that this orthorhombic calcium peroxide structure is thermodynamically stable. The simulated X-ray diffraction (XRD) pattern using our predicted structure is in excellent agreement with experimental data. We also show ...
International audienceAbstract Lime system has a chemical composition CaO, which is known as thermod...
The formation of an oxygen vacancy and the simultaneous re-adsorption of an oxygen atom on regular a...
Theoretical modeling and computational simulations play an important role in materials research. In ...
Structures of calcium peroxide (CaO2) are investigated in the pressure range 0–200 GPa using the ab ...
A genetic algorithm has been used to generate plausible crystal structures from the knowledge of onl...
Using evolutionary crystal structure prediction algorithm USPEX, we showed that at pressures of the ...
International audienceThe heat of formation of ye'elimite Ca 4 Al 6 O 12 .SO 4 was calculated using ...
We studied an energetically favorable cubic Ce0.75Zr0.25O2 solid solution using a genetic algorithm ...
We report results from ab initio cluster-model calculations on the O(1s) binding energy (BE) in the ...
The electronic structure of transition metal oxides governs the catalysis of many central reactions ...
Solving and predicting atomic structures from first-principles methodologies is limited by the compu...
Structural and energetic surface properties of the alkaline earth metal oxides MgO, CaO, SrO, and Ba...
The physical and chemical properties of materials are intimately related to their underlying crystal...
A first principles-based methodology for efficiently and accurately finding thermodynamically stable...
We apply density functional theory (DFT) to the calculation of the 17O NMR parameters in Ca and Mg o...
International audienceAbstract Lime system has a chemical composition CaO, which is known as thermod...
The formation of an oxygen vacancy and the simultaneous re-adsorption of an oxygen atom on regular a...
Theoretical modeling and computational simulations play an important role in materials research. In ...
Structures of calcium peroxide (CaO2) are investigated in the pressure range 0–200 GPa using the ab ...
A genetic algorithm has been used to generate plausible crystal structures from the knowledge of onl...
Using evolutionary crystal structure prediction algorithm USPEX, we showed that at pressures of the ...
International audienceThe heat of formation of ye'elimite Ca 4 Al 6 O 12 .SO 4 was calculated using ...
We studied an energetically favorable cubic Ce0.75Zr0.25O2 solid solution using a genetic algorithm ...
We report results from ab initio cluster-model calculations on the O(1s) binding energy (BE) in the ...
The electronic structure of transition metal oxides governs the catalysis of many central reactions ...
Solving and predicting atomic structures from first-principles methodologies is limited by the compu...
Structural and energetic surface properties of the alkaline earth metal oxides MgO, CaO, SrO, and Ba...
The physical and chemical properties of materials are intimately related to their underlying crystal...
A first principles-based methodology for efficiently and accurately finding thermodynamically stable...
We apply density functional theory (DFT) to the calculation of the 17O NMR parameters in Ca and Mg o...
International audienceAbstract Lime system has a chemical composition CaO, which is known as thermod...
The formation of an oxygen vacancy and the simultaneous re-adsorption of an oxygen atom on regular a...
Theoretical modeling and computational simulations play an important role in materials research. In ...