Standard
C,N-chelated diaminocarbene platinum(II) complexes derived from 3,4-diaryl-1H-pyrrol-2,5-diimines and cis-dichlorobis(isonitrile)platinum(II) : Synthesis, cytotoxicity, and catalytic activity in hydrosilylation reactions. / Afanasenko, Anastasiia M.; Chulkova, Tatiana G.; Boyarskaya, Irina A.; Islamova, Regina M.; Legin, Anton A.; Keppler, Bernhard K.; Selivanov, Stanislav I.; Vereshchagin, Anatoly N.; Elinson, Michail N.; Haukka, Matti.
в:
Journal of Organometallic Chemistry, Том 923, 121435, 15.09.2020.
Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
Harvard
Afanasenko, AM
, Chulkova, TG, Boyarskaya, IA, Islamova, RM, Legin, AA, Keppler, BK, Selivanov, SI, Vereshchagin, AN, Elinson, MN & Haukka, M 2020, '
C,N-chelated diaminocarbene platinum(II) complexes derived from 3,4-diaryl-1H-pyrrol-2,5-diimines and cis-dichlorobis(isonitrile)platinum(II): Synthesis, cytotoxicity, and catalytic activity in hydrosilylation reactions',
Journal of Organometallic Chemistry, Том. 923, 121435.
https://doi.org/10.1016/j.jorganchem.2020.121435
APA
Afanasenko, A. M.
, Chulkova, T. G., Boyarskaya, I. A., Islamova, R. M., Legin, A. A., Keppler, B. K., Selivanov, S. I., Vereshchagin, A. N., Elinson, M. N., & Haukka, M. (2020).
C,N-chelated diaminocarbene platinum(II) complexes derived from 3,4-diaryl-1H-pyrrol-2,5-diimines and cis-dichlorobis(isonitrile)platinum(II): Synthesis, cytotoxicity, and catalytic activity in hydrosilylation reactions.
Journal of Organometallic Chemistry,
923, [121435].
https://doi.org/10.1016/j.jorganchem.2020.121435
Vancouver
Afanasenko AM
, Chulkova TG, Boyarskaya IA, Islamova RM, Legin AA, Keppler BK и пр.
C,N-chelated diaminocarbene platinum(II) complexes derived from 3,4-diaryl-1H-pyrrol-2,5-diimines and cis-dichlorobis(isonitrile)platinum(II): Synthesis, cytotoxicity, and catalytic activity in hydrosilylation reactions.
Journal of Organometallic Chemistry. 2020 Сент. 15;923. 121435.
https://doi.org/10.1016/j.jorganchem.2020.121435
Author
Afanasenko, Anastasiia M.
; Chulkova, Tatiana G. ; Boyarskaya, Irina A. ; Islamova, Regina M. ; Legin, Anton A. ; Keppler, Bernhard K. ; Selivanov, Stanislav I. ; Vereshchagin, Anatoly N. ; Elinson, Michail N. ; Haukka, Matti. /
C,N-chelated diaminocarbene platinum(II) complexes derived from 3,4-diaryl-1H-pyrrol-2,5-diimines and cis-dichlorobis(isonitrile)platinum(II) : Synthesis, cytotoxicity, and catalytic activity in hydrosilylation reactions. в:
Journal of Organometallic Chemistry. 2020 ; Том 923.
BibTeX
@article{a1c02b08014e42268dbfeb9a76b06ec9,
title = "C,N-chelated diaminocarbene platinum(II) complexes derived from 3,4-diaryl-1H-pyrrol-2,5-diimines and cis-dichlorobis(isonitrile)platinum(II): Synthesis, cytotoxicity, and catalytic activity in hydrosilylation reactions",
abstract = "The reaction of 3,4-diaryl-1H-pyrrol-2,5-diimines with cis-dichlorobis(isonitrile)platinum(II) affords the C,N-chelated diaminocarbene platinum(II) complexes, which have been fully characterized including molecular spectroscopy, single crystal X-ray diffraction and DFT calculations. The obtained platinum(II) complexes are effective catalysts for the hydrosilylation of alkynes and alkenes. Thus, the reaction of phenylacetylene with triethoxysilane leads to the formation of α- and β-(E)-vinylsilanes, generating TON's in the range of 103 to 104 and TOF's in the range of 102 to 103 h−1. Also, the cross-linked silicones, possessing the luminescence properties, were obtained by the hydrosilylation reaction of vinyl- and hydride-containing polysiloxanes. Additionally, the efficiency of diaminocarbene platinum(II) complexes against CH1/PA-1, SW480, and A549 cancer cell lines has been demonstrated by in vitro cytotoxicity studies.",
keywords = "Anti-cancer activity, Catalysis, Diaminocarbene platinum(II) complexes, Hydrosilylation, Luminescence, PALLADIUM, CARBENE, ACYCLIC DIAMINOCARBENE, ISONITRILES, WATER",
author = "Afanasenko, {Anastasiia M.} and Chulkova, {Tatiana G.} and Boyarskaya, {Irina A.} and Islamova, {Regina M.} and Legin, {Anton A.} and Keppler, {Bernhard K.} and Selivanov, {Stanislav I.} and Vereshchagin, {Anatoly N.} and Elinson, {Michail N.} and Matti Haukka",
year = "2020",
month = sep,
day = "15",
doi = "10.1016/j.jorganchem.2020.121435",
language = "English",
volume = "923",
journal = "Journal of Organometallic Chemistry",
issn = "0022-328X",
publisher = "Elsevier",
}
RIS
TY - JOUR
T1 - C,N-chelated diaminocarbene platinum(II) complexes derived from 3,4-diaryl-1H-pyrrol-2,5-diimines and cis-dichlorobis(isonitrile)platinum(II)
T2 - Synthesis, cytotoxicity, and catalytic activity in hydrosilylation reactions
AU - Afanasenko, Anastasiia M.
AU - Chulkova, Tatiana G.
AU - Boyarskaya, Irina A.
AU - Islamova, Regina M.
AU - Legin, Anton A.
AU - Keppler, Bernhard K.
AU - Selivanov, Stanislav I.
AU - Vereshchagin, Anatoly N.
AU - Elinson, Michail N.
AU - Haukka, Matti
PY - 2020/9/15
Y1 - 2020/9/15
N2 - The reaction of 3,4-diaryl-1H-pyrrol-2,5-diimines with cis-dichlorobis(isonitrile)platinum(II) affords the C,N-chelated diaminocarbene platinum(II) complexes, which have been fully characterized including molecular spectroscopy, single crystal X-ray diffraction and DFT calculations. The obtained platinum(II) complexes are effective catalysts for the hydrosilylation of alkynes and alkenes. Thus, the reaction of phenylacetylene with triethoxysilane leads to the formation of α- and β-(E)-vinylsilanes, generating TON's in the range of 103 to 104 and TOF's in the range of 102 to 103 h−1. Also, the cross-linked silicones, possessing the luminescence properties, were obtained by the hydrosilylation reaction of vinyl- and hydride-containing polysiloxanes. Additionally, the efficiency of diaminocarbene platinum(II) complexes against CH1/PA-1, SW480, and A549 cancer cell lines has been demonstrated by in vitro cytotoxicity studies.
AB - The reaction of 3,4-diaryl-1H-pyrrol-2,5-diimines with cis-dichlorobis(isonitrile)platinum(II) affords the C,N-chelated diaminocarbene platinum(II) complexes, which have been fully characterized including molecular spectroscopy, single crystal X-ray diffraction and DFT calculations. The obtained platinum(II) complexes are effective catalysts for the hydrosilylation of alkynes and alkenes. Thus, the reaction of phenylacetylene with triethoxysilane leads to the formation of α- and β-(E)-vinylsilanes, generating TON's in the range of 103 to 104 and TOF's in the range of 102 to 103 h−1. Also, the cross-linked silicones, possessing the luminescence properties, were obtained by the hydrosilylation reaction of vinyl- and hydride-containing polysiloxanes. Additionally, the efficiency of diaminocarbene platinum(II) complexes against CH1/PA-1, SW480, and A549 cancer cell lines has been demonstrated by in vitro cytotoxicity studies.
KW - Anti-cancer activity
KW - Catalysis
KW - Diaminocarbene platinum(II) complexes
KW - Hydrosilylation
KW - Luminescence
KW - PALLADIUM
KW - CARBENE
KW - ACYCLIC DIAMINOCARBENE
KW - ISONITRILES
KW - WATER
UR - http://www.scopus.com/inward/record.url?scp=85088996483&partnerID=8YFLogxK
U2 - 10.1016/j.jorganchem.2020.121435
DO - 10.1016/j.jorganchem.2020.121435
M3 - Article
AN - SCOPUS:85088996483
VL - 923
JO - Journal of Organometallic Chemistry
JF - Journal of Organometallic Chemistry
SN - 0022-328X
M1 - 121435
ER -