Experimental results of the synthesis of diamond-like high-pressure compounds using the high-pressure technique and the method of laser deposition are presented. Their combination of unique characteristics can be achieved by varying the B / C ratio. The possibility of spraying micron or nanosized carbon films with a high boron content opens the way to the use of such materials on an industrial scale. Hetero-diamonds with a high boron content have high elastic moduli, and diamond polycrystals doped with boron have metallic conductivity.
Cand. tech. V.P. FILONENKO
1 , Dr. Sciences A. V. NOZHKINA
2 , Cand. physical-mat. RI ROMANOV
3 , Ph.D. physical-mat. Sci. P. V. ZININ
4 (
e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it. ), Cand. tech. Sci. S. A. TITOV
4 , Cand. physical-mat. Sciences A. M. LOMONOSOV
5 , Cand. physical-mat. Sciences P. D. PUPYREV
5 , K. M. BULATOV
4 , A. A. BYKOV
4 , Cand. tech. Sciences A. S. ANOKHIN
1.7 (
e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it. ), Cand. physical-mat. Sci. IB KUTUZA
4 , Cand. physical-mat. Sci. I. A. TROYAN
6 , Dr. of Phys.-Math. sciences V. Yu. FOMINSKY
3
;
1 Institute for High Pressure Physics. L. F. Vereshchagina Russian Academy of Sciences (Russia, Troitsk)
2 National Research Technological University & # 171; MISiS & # 187 ;, (Russia, Moscow)
< sup> 3 National Research Nuclear University MEPhI (Russia, Moscow)
4 Scientific and Technological Center for Unique Instrumentation of the Russian Academy of Sciences (Russia, Moscow)
< sup> 5 General Physics Institute A.M. Prokhorov Russian Academy of Sciences (Russia, Moscow)
6 Federal Research Center & # 171; Crystallography and Photonics & # 187 ;, Russian Academy of Sciences (Russia, Moscow)
7 Institute of Metallurgy and Materials Science named after A. A. Baikova Russian Academy of Sciences (Russia, Moscow)
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