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Article Dans Une Revue Diamond and Related Materials Année : 2021

Crystal chemistry rationale and ab initio investigation of ultra-hard dense rhombohedral carbon and boron nitride

Résumé

Rhombohedral dense forms of carbon, rh-C 2 (or hexagonal h-C6), and boron nitride, rh-BN (or hexagonal h-B3N3), are derived from rhombohedral 3R graphite based on original crystal chemistry scheme backed with full cell geometry optimization to minimal energy ground state computations within the quantum density functional theory. Considering throughout hexagonal settings featuring extended lattices, the calculation of the hexagonal set of elastic constants, provide results of large bulk moduli i.e. Bo (rh-C2) = 438 GPa close to that of diamond, and Bo0 (rh-BN) = 369 GPa close to that of cubic BN. The hardness assessment in the framework of three contemporary models enables both phases to be considered as ultra-hard. From the electronic band structures calculated in the hexagonal Brillouin zones, 3R graphite is a small-gap semiconductor, oppositely to rh-C2 that is characterized by a large band gap close to 5 eV, as well as the two BN phases.
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Dates et versions

hal-03356749 , version 1 (28-09-2021)

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Samir Matar, Vladimir Solozhenko. Crystal chemistry rationale and ab initio investigation of ultra-hard dense rhombohedral carbon and boron nitride. Diamond and Related Materials, 2021, 120, pp.108607. ⟨10.1016/j.diamond.2021.108607⟩. ⟨hal-03356749⟩
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