First principles calculations have become one of the main computational methods in condensed matter physics and physical chemistry due to their high degree of accuracy without the usage of any fitting parameters. Interest has been growing in the engineering disciplines to exploit these properties to predict new materials with desired material properties, greatly accelerating the prototyping of materials over experimental methods with a degree of accuracy not found in other computational methods. In this thesis, first principles calculations will be applied to understand material properties of four classes of chemical systems with promising mechanical or thermodynamic applications, but whose experimental characterizations are either incomple...
Although the microscopic view of solids is still evolving, for a large class of materials one can co...
International audienceThis study investigates the physical properties of transition metal carbides c...
The structural, thermodynamic, mechanical and electronic properties of 5d transitional metal diborid...
First principles calculations have become one of the main computational methods in condensed matter ...
First-principles approaches to the modeling of phase equilibria rely on the integration of accurate ...
We present a brief report on the methods of solid state physics (electronic structure, statistical t...
The term “first-principles calculations” is a synonym for the numerical determination of the electro...
The question of material stability is of fundamental importance to any analysis of system properties...
Current fundamental electronic-structure theory allows for the accurate prediction and characterizat...
The investigation of materials at extreme conditions of high pressure and temperature (high-PT), has...
<p>Motivated by interest in the elastic properties of high-strength amorphous metals, we examine the...
The present thesis is concerned to the application of first-principles self-consistent total-energy ...
In this thesis, quantum-mechanical calculations within density-functional theory on metallic systems...
AbstractHalf-Heusler alloys are an exciting class of thermoelectric materials that have shown great ...
Half-Heusler alloys are an exciting class of thermoelectric materials that have shown great improvem...
Although the microscopic view of solids is still evolving, for a large class of materials one can co...
International audienceThis study investigates the physical properties of transition metal carbides c...
The structural, thermodynamic, mechanical and electronic properties of 5d transitional metal diborid...
First principles calculations have become one of the main computational methods in condensed matter ...
First-principles approaches to the modeling of phase equilibria rely on the integration of accurate ...
We present a brief report on the methods of solid state physics (electronic structure, statistical t...
The term “first-principles calculations” is a synonym for the numerical determination of the electro...
The question of material stability is of fundamental importance to any analysis of system properties...
Current fundamental electronic-structure theory allows for the accurate prediction and characterizat...
The investigation of materials at extreme conditions of high pressure and temperature (high-PT), has...
<p>Motivated by interest in the elastic properties of high-strength amorphous metals, we examine the...
The present thesis is concerned to the application of first-principles self-consistent total-energy ...
In this thesis, quantum-mechanical calculations within density-functional theory on metallic systems...
AbstractHalf-Heusler alloys are an exciting class of thermoelectric materials that have shown great ...
Half-Heusler alloys are an exciting class of thermoelectric materials that have shown great improvem...
Although the microscopic view of solids is still evolving, for a large class of materials one can co...
International audienceThis study investigates the physical properties of transition metal carbides c...
The structural, thermodynamic, mechanical and electronic properties of 5d transitional metal diborid...