Due to a large discrepancy between theory and experiment, the electronic character of crystalline boron carbide B13C2 has been a controversial topic in the field of icosahedral boron-rich solids. We demonstrate that this discrepancy is removed when configurational disorder is accurately considered in the theoretical calculations. We find that while the ordered ground state B13C2 is metallic, the configurationally disordered B13C2, modeled with a superatom-special quasirandom structure method, goes through a metal to nonmetal transition as the degree of disorder is increased with increasing temperature. Specifically, one of the chain-end carbon atoms in the CBC chains substitutes a neighboring equatorial boron atom in a B-12 icosahedron bond...
The atomic structures of boron carbide in the regime below ~13.3 at.% C (known as boron-very-rich bo...
Abstract Boron carbide, the simple chemical combination of boron and carbon, is one of the best?know...
Recent observations of planar defects in boron carbide have been shown to deviate from perfect mirro...
Due to a large discrepancy between theory and experiment, the electronic character of crystalline bo...
Due to a large discrepancy between theory and experiment, the electronic character of crystalline bo...
This thesis is a theoretical study of configurational disorder in icosahedral boron-rich solids, in ...
The elastic properties of alloys between boron suboxide (B6O) and boron carbide (B13C2), denoted by ...
A unique combination of useful properties in boron-carbide, such as extreme hardness, excellent frac...
The overestimation, rather than the usual underestimation, of the electronic band gap at 0 K of boro...
We perform first-principles calculations to investigate the phase stability of boron carbide, concen...
The atomic structures of boron carbide in the regime below ?13.3 at. % C (known as boron-very-rich b...
Boron Carbide exhibits a broad composition range, implying a degree of intrinsic substitutional diso...
International audienceIn this work, we focus on the understanding gained from the investigation of t...
The atomic structures of boron carbide in the regime below ~13.3 at.% C (known as boron-very-rich bo...
Abstract Boron carbide, the simple chemical combination of boron and carbon, is one of the best?know...
Recent observations of planar defects in boron carbide have been shown to deviate from perfect mirro...
Due to a large discrepancy between theory and experiment, the electronic character of crystalline bo...
Due to a large discrepancy between theory and experiment, the electronic character of crystalline bo...
This thesis is a theoretical study of configurational disorder in icosahedral boron-rich solids, in ...
The elastic properties of alloys between boron suboxide (B6O) and boron carbide (B13C2), denoted by ...
A unique combination of useful properties in boron-carbide, such as extreme hardness, excellent frac...
The overestimation, rather than the usual underestimation, of the electronic band gap at 0 K of boro...
We perform first-principles calculations to investigate the phase stability of boron carbide, concen...
The atomic structures of boron carbide in the regime below ?13.3 at. % C (known as boron-very-rich b...
Boron Carbide exhibits a broad composition range, implying a degree of intrinsic substitutional diso...
International audienceIn this work, we focus on the understanding gained from the investigation of t...
The atomic structures of boron carbide in the regime below ~13.3 at.% C (known as boron-very-rich bo...
Abstract Boron carbide, the simple chemical combination of boron and carbon, is one of the best?know...
Recent observations of planar defects in boron carbide have been shown to deviate from perfect mirro...