First-principles total-energy calculations for solid boron predict a transition from the insulating α-rhombohedral phase first to a metallic body-centered-tetragonal structure at 210 GPa and subsequently to a face-centered-cubic structure at 360 GPa. While the possibility of intervening phases not considered here cannot be ruled out, it is argued that 210 GPa is an upper bound for the onset of a sequence of structural transitions by which boron evolves from a covalent insulator to a trivalent metal more like its neighbor Al
The structures, stability, mechanical and electronic properties of α-boron and a promising metastabl...
International audienceHere we report the systematic study of solid-state phase transformations betwe...
Solid-state phase transformations and melting of high-purity crystalline boron have been in situ and...
Different phases of solid boron under high pressure are studied by first principles calculations. Th...
International audience--The γ B28 phase is a recently established high pressure phase of boron. Its ...
Abstract — γB28 is a recently established highpressure phase of boron. Its structure consists of ico...
International audienceQuasi-hydrostatic compression of rhombohedral boron monosulfide (r-BS) has bee...
In the phase diagram of elemental boron, an unknown high-pressure form was identified as γ-orthorhom...
Elemental boron is an interesting material, both from technological and scientific point of view. At...
Its low weight, high melting point, and large degree of hardness make elemental boron a technologica...
We predict three new polymorphs of boron by applying density functional theory (PBE flavor) to large...
Its low weight, high melting point, and large degree of hardness make elemental boron a technologica...
Its low weight, high melting point, and large degree of hardness make elemental boron a technologica...
Its low weight, high melting point, and large degree of hardness make elemental boron a technologica...
We predict three new polymorphs of boron by applying density functional theory (PBE flavor) to large...
The structures, stability, mechanical and electronic properties of α-boron and a promising metastabl...
International audienceHere we report the systematic study of solid-state phase transformations betwe...
Solid-state phase transformations and melting of high-purity crystalline boron have been in situ and...
Different phases of solid boron under high pressure are studied by first principles calculations. Th...
International audience--The γ B28 phase is a recently established high pressure phase of boron. Its ...
Abstract — γB28 is a recently established highpressure phase of boron. Its structure consists of ico...
International audienceQuasi-hydrostatic compression of rhombohedral boron monosulfide (r-BS) has bee...
In the phase diagram of elemental boron, an unknown high-pressure form was identified as γ-orthorhom...
Elemental boron is an interesting material, both from technological and scientific point of view. At...
Its low weight, high melting point, and large degree of hardness make elemental boron a technologica...
We predict three new polymorphs of boron by applying density functional theory (PBE flavor) to large...
Its low weight, high melting point, and large degree of hardness make elemental boron a technologica...
Its low weight, high melting point, and large degree of hardness make elemental boron a technologica...
Its low weight, high melting point, and large degree of hardness make elemental boron a technologica...
We predict three new polymorphs of boron by applying density functional theory (PBE flavor) to large...
The structures, stability, mechanical and electronic properties of α-boron and a promising metastabl...
International audienceHere we report the systematic study of solid-state phase transformations betwe...
Solid-state phase transformations and melting of high-purity crystalline boron have been in situ and...