International audienceRhombohedral 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. Fro...
peer reviewedMolecular dynamics simulations show that graphite will transform into a superhard phase...
Based on superdense C6 with quartz (qtz) topology, new ultrahigh-density hexagonal binary phases, qt...
Defence is held on 11.6.2021 15:00 – 19:00 Zoom, https://aalto.zoom.us/j/66334552243Hexagonal bor...
International audienceNew ultra-hard rhombohedral B2N2 and BC2N - or hexagonal B6N6 and B3C6N3 - are...
International audienceA new ultra-hard rhombohedral carbon rh-C4 (or hexagonal h-C12) is reported as...
Starting from formerly investigated graphitic like C3N4, selective substitution of nitrogen with bor...
A number of potentially ultra-hard materials are examined using ab-initio methods. Compound phases o...
International audienceNovel ultra-hard carbon allotropes are proposed based on crystal chemistry rat...
The modern synthesis of superhard and, especially, ultrahard phases is a fascinating area of researc...
As the analog of carbon allotropes, new three-dimensional (3D) boron nitride (BN) allotropes have at...
Boron nitride (BN) is in many respects similar to the elementary carbon. BN exists in 4 crystalline ...
Carl Trygger Foundation; Swedish Research Council; Uppsala University KoF initiatives on graphene an...
International audienceIn this work, we focus on the understanding gained from the investigation of t...
International audienceThe purpose of this paper is to predict the existence of novel 3D covalent ult...
First-principles calculations have been used to investigate the structural and electronic properties...
peer reviewedMolecular dynamics simulations show that graphite will transform into a superhard phase...
Based on superdense C6 with quartz (qtz) topology, new ultrahigh-density hexagonal binary phases, qt...
Defence is held on 11.6.2021 15:00 – 19:00 Zoom, https://aalto.zoom.us/j/66334552243Hexagonal bor...
International audienceNew ultra-hard rhombohedral B2N2 and BC2N - or hexagonal B6N6 and B3C6N3 - are...
International audienceA new ultra-hard rhombohedral carbon rh-C4 (or hexagonal h-C12) is reported as...
Starting from formerly investigated graphitic like C3N4, selective substitution of nitrogen with bor...
A number of potentially ultra-hard materials are examined using ab-initio methods. Compound phases o...
International audienceNovel ultra-hard carbon allotropes are proposed based on crystal chemistry rat...
The modern synthesis of superhard and, especially, ultrahard phases is a fascinating area of researc...
As the analog of carbon allotropes, new three-dimensional (3D) boron nitride (BN) allotropes have at...
Boron nitride (BN) is in many respects similar to the elementary carbon. BN exists in 4 crystalline ...
Carl Trygger Foundation; Swedish Research Council; Uppsala University KoF initiatives on graphene an...
International audienceIn this work, we focus on the understanding gained from the investigation of t...
International audienceThe purpose of this paper is to predict the existence of novel 3D covalent ult...
First-principles calculations have been used to investigate the structural and electronic properties...
peer reviewedMolecular dynamics simulations show that graphite will transform into a superhard phase...
Based on superdense C6 with quartz (qtz) topology, new ultrahigh-density hexagonal binary phases, qt...
Defence is held on 11.6.2021 15:00 – 19:00 Zoom, https://aalto.zoom.us/j/66334552243Hexagonal bor...