|
This article is cited in 7 scientific papers (total in 7 papers)
Atomic clusters
Fluid synthesis and structure of a new polymorphic modification of boron nitride
V. V. Pokropivnyi, A. S. Smolyar, L. I. Ovsiannikova, A. V. Pokropivny, V. A. Kuts, V. I. Lyashenko, Yu. V. Nesterenko Frantsevich Institute of Materials Science Problems, National Academy of Sciences of Ukraine, Kiev
Abstract:
A new previously unknown phase of boron nitride with a hardness of 0.41–0.63 GPa has been pre-pared by the supercritical fluid synthesis. The presence of a new phase is confirmed by the X-ray spectra and IR absorption spectra, where new reflections and bands are distinguished. The fundamental reflection of the X-ray diffraction pattern is $d$ = 0.286–0.291 nm, and the characteristic band in the infrared absorption spectrum is observed at 704 cm$^{-1}$. The X-ray diffraction pattern and the experimental and theoretical infrared absorption spectra show that a new synthesized boron nitride phase can be a cluster crystal (space group 211) with a simple cubic lattice. Cage clusters of a fullerene-like morphology B$_{24}$N$_{24}$ with point symmetry $O$ are arranged in lattice sites.
Received: 27.07.2012 Accepted: 02.10.2012
Citation:
V. V. Pokropivnyi, A. S. Smolyar, L. I. Ovsiannikova, A. V. Pokropivny, V. A. Kuts, V. I. Lyashenko, Yu. V. Nesterenko, “Fluid synthesis and structure of a new polymorphic modification of boron nitride”, Fizika Tverdogo Tela, 55:4 (2013), 806–812; Phys. Solid State, 55:4 (2013), 878–884
Linking options:
https://www.mathnet.ru/eng/ftt12401 https://www.mathnet.ru/eng/ftt/v55/i4/p806
|
|