Search Results - "BOGANOV, S. E"

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    Dichlorosilylene–hydrogen chloride complex: direct IR spectroscopic detection in argon matrix by Boganov, S. E., Promyslov, V. M., Egorov, M. P.

    Published in Russian chemical bulletin (01-01-2019)
    “…A 1: 1 donor–acceptor complex between SiCl 2 and HCl was detected by matrix IR spectroscopy. The existence of the complex was previously predicted…”
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    Nonclassical complex of dichlorosilylene with CO: direct spectroscopic detection by Boganov, S. E., Promyslov, V. M., Lalov, A. V., Syroeshkin, M. A., Egorov, M. P.

    Published in Russian chemical bulletin (01-06-2021)
    “…A complex between SiCl 2 and CO of the 1:1 composition with coordination of the silylene to the C atom of carbon monoxide is detected in Ar matrices using FTIR…”
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    Complexes of dichlorosilylene with allyl chloride and allyl bromide: matrix IR spectroscopy and quantum chemical studies by Boganov, S. E., Promyslov, V. M., Rynin, S. S., Krylova, I. V., Zaitseva, G. S., Egorov, M. P.

    Published in Russian chemical bulletin (01-03-2018)
    “…Formation of donor-acceptor complexes between dichlorosilylene, SiCl 2 , and allyl halides, AllHal(Hal= Cl, Br) was detected in Ar matrixes using matrix IR…”
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    Mechanism of thermal decomposition of allyltrichlorosilane with formation of three labile intermediates: dichlorosilylene, allyl radical, and atomic chlorine by Boganov, S. E., Promyslov, V. M., Krylova, I. V., Zaitseva, G. S., Egorov, M. P.

    Published in Russian chemical bulletin (01-05-2016)
    “…It is experimentally found that allyltrichlorosilane dissociates under vacuum pyrolysis (~10 –2 Torr) at temperatures above 1100 K to form three labile…”
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    Direct detection of chlorosilylene and time resolved study of some of its reactions in the gas-phase using a new photochemical precursor by Becerra, R., Boganov, S.E., Egorov, M.P., Krylova, I.V., Nefedov, O.M., Walsh, R.

    Published in Chemical physics letters (15-09-2005)
    “…Chlorosilylene, ClSiH, was prepared by 193 nm laser flash photolysis of 1-chloro-1-silacyclopent-3-ene in the gas phase. ClSiH was monitored in real time at…”
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    First gas-phase detection of dimethylgermylene and time-resolved study of some of its reactions by Becerra, R., Boganov, S.E., Egorov, M.P., Lee, V.Ya, Nefedov, O.M., Walsh, R.

    Published in Chemical physics letters (16-02-1996)
    “…Using a laser flash photolysis/laser probe technique, applied to two different gaseous precursor molecules, we report absorption signals in the wavelength…”
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    Intramolecular stabilization of the silylene center due to the donor-acceptor interaction with a valence-unbonded nitrogen atom. A theoretical consideration by Rynin, S. S., Boganov, S. E., Karlov, S. S., Egorov, M. P.

    Published in Russian chemical bulletin (01-12-2014)
    “…The structure and thermochemistry of typical reactions of cyclic silylenes, 2,5,8-trimethyl-1-sila-2,5,8-triazacycloocta-3,6-dien-1-ylidene and…”
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    Quantum chemical study of σ-dimerization reaction of 1-silacycloprop-2-enes by Boganov, S. E., Promyslov, V. M., Baskir, E. G., Egorov, M. P., Nefedov, O. M.

    Published in Russian chemical bulletin (01-03-2013)
    “…The PBE/TZ2P method was used to study a concerted σ-dimerization reaction of 1-silacycloprop-2-enes having substituents with different electron effects. The…”
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    Computational study of reaction pathways in the course of interaction of deactivated silylenes with buta-1,3-diene by Rynin, S.S., Faustov, V.I., Boganov, S.E., Egorov, M.P., Nefedov, O.M.

    Published in Journal of organometallic chemistry (01-10-2010)
    “…The PESs of systems including deactivated silylenes (SiHHal, SiHal 2, Hal = F, Cl, and 2-silaimidazol-2-ylidene, SiN 2H 2C 2H 2) and buta-1,3-diene have been…”
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    Quantum chemical study of interactions of carbenes and their analogs of the EH2 and EHX types (E = Si, Ge, Sn; X = F, Cl, Br) with HX and H2, respectively: the insertion and substituent exchange reactions by Boganov, S. E., Promyslov, V. M., Faustov, V. I., Egorov, M. P., Nefedov, O. M.

    Published in Russian chemical bulletin (01-11-2011)
    “…Interactions of carbenes and carbene analogs EH 2 and EHX with HX and H 2 (E = C, Si, Ge, Sn; X = F, Cl, Br), respectively, were studied by quantum chemical…”
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