Based on superdense C6 with quartz (qtz) topology, new ultrahigh-density hexagonal binary phases, qtz BN and qtz SiC, have been identified from full geometry structure relaxations and ground state energies using calculations based on the quantum density functional theory (DFT) with gradient GGA exchange-correlation XC functional. Like qtz C6 with respect to diamond, the resulting binary qtz BN and qtz SiC were found to be less cohesive than cubic BN and cubic SiC, respectively, but were confirmed to be mechanically (elastic constants) and dynamically (phonon band structures) stable. Higher densities of the new phases correlate with their higher hardness values compared to cubic BN and cubic SiC. In contrast to the regular tetrahedra that ch...
We present local density functional theory (DFT-LDA) studies of the structural properties of boron n...
A thermodynamically stable I4\u305 m2 phase of superhard BC5 was predicted from exhaustive structura...
Two possible phases of superhard material BC3 originating from the cubic diamond structure are inves...
The superdense hexagonal phosphides BP and AlP, whose structures are formed by distorted tetrahedra ...
International audienceRhombohedral dense forms of carbon, rh-C 2 (or hexagonal h-C6), and boron nitr...
A number of potentially ultra-hard materials are examined using ab-initio methods. Compound phases o...
The modern synthesis of superhard and, especially, ultrahard phases is a fascinating area of researc...
International audienceNew ultra-hard rhombohedral B2N2 and BC2N - or hexagonal B6N6 and B3C6N3 - are...
Three direct and two indirect semiconductor materials together with one metallic material for group-...
Synthesized cubic BC4N with Vickers hardness 10 % higher than that of cubic BC2N exhibits a strange ...
Twin boundaries (TBs) play an essential role in enhancing the mechanical, electronic and transport p...
International audienceIn this work, we focus on the understanding gained from the investigation of t...
Today's development of new electronic devices requires materials that can operate under harsh condi...
Starting from formerly investigated graphitic like C3N4, selective substitution of nitrogen with bor...
International audienceNovel ultra-hard carbon allotropes are proposed based on crystal chemistry rat...
We present local density functional theory (DFT-LDA) studies of the structural properties of boron n...
A thermodynamically stable I4\u305 m2 phase of superhard BC5 was predicted from exhaustive structura...
Two possible phases of superhard material BC3 originating from the cubic diamond structure are inves...
The superdense hexagonal phosphides BP and AlP, whose structures are formed by distorted tetrahedra ...
International audienceRhombohedral dense forms of carbon, rh-C 2 (or hexagonal h-C6), and boron nitr...
A number of potentially ultra-hard materials are examined using ab-initio methods. Compound phases o...
The modern synthesis of superhard and, especially, ultrahard phases is a fascinating area of researc...
International audienceNew ultra-hard rhombohedral B2N2 and BC2N - or hexagonal B6N6 and B3C6N3 - are...
Three direct and two indirect semiconductor materials together with one metallic material for group-...
Synthesized cubic BC4N with Vickers hardness 10 % higher than that of cubic BC2N exhibits a strange ...
Twin boundaries (TBs) play an essential role in enhancing the mechanical, electronic and transport p...
International audienceIn this work, we focus on the understanding gained from the investigation of t...
Today's development of new electronic devices requires materials that can operate under harsh condi...
Starting from formerly investigated graphitic like C3N4, selective substitution of nitrogen with bor...
International audienceNovel ultra-hard carbon allotropes are proposed based on crystal chemistry rat...
We present local density functional theory (DFT-LDA) studies of the structural properties of boron n...
A thermodynamically stable I4\u305 m2 phase of superhard BC5 was predicted from exhaustive structura...
Two possible phases of superhard material BC3 originating from the cubic diamond structure are inves...