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Andrey Bolshakov

Researcher at Russian Academy of Sciences

Publications -  116
Citations -  1408

Andrey Bolshakov is an academic researcher from Russian Academy of Sciences. The author has contributed to research in topics: Diamond & Chemical vapor deposition. The author has an hindex of 15, co-authored 108 publications receiving 1011 citations. Previous affiliations of Andrey Bolshakov include Harbin Institute of Technology & National University of Science and Technology.

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Thermal conductivity of high purity synthetic single crystal diamonds

TL;DR: In this article, a set of expressions for the anharmonic phonon scattering processes (normal and umklapp) has been proposed which gives an excellent fit to the experimental data over almost the whole temperature range explored.
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High-rate growth of single crystal diamond in microwave plasma in CH4/H2 and CH4/H2/Ar gas mixtures in presence of intensive soot formation

TL;DR: In this article, the growth of diamond plates in a microwave plasma using H2-CH4 and H2CH4-Ar gas mixtures in a broad range of methane concentration (2-15%) is studied.
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Photoluminescence of SiV centers in single crystal CVD diamond in situ doped with Si from silane

TL;DR: In this paper, single crystal diamond layers with bright photoluminescence (PL) of silicon-vacancy (SiV) color centers at 738nm wavelength have been grown on (100) diamond substrates by a microwave plasma CVD using a controlled Si doping via adding silane to CH4H2 reaction gas mixture in the course of the deposition process.
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A novel CW laser–powder method of carbon single-wall nanotubes production

TL;DR: In this article, a continuous high productive laser-powder method of carbon single-wall nanotube (SWNT) synthesis based on the laser ablation of mixed graphite and metallic catalysts (NiyCos1:1) powders by a 2-kW continuous wave CO laser in an argon 2 or nitrogen stream has been proposed.
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All-carbon detector with buried graphite pillars in CVD diamond

TL;DR: A diamond detector of 3D architecture without any metallization is developed for spectroscopy of ionizing radiation and single particles detection in this paper, where carbon electrode system was fabricated using a femtosecond infrared laser to induce graphitization on the surface and inside 4.4mm diamond slab.