Home / Publications / Facile synthesis of digermylene oxide and its reactivity towards vanadocene: the first example of Cp2V–germylene coordination

Facile synthesis of digermylene oxide and its reactivity towards vanadocene: the first example of Cp2V–germylene coordination

Kseniya Vital'evna Arsenyeva 1
Kseniya Vital'evna Arsenyeva
Maxim Gennad'evich Chegerev 2
Maxim Gennad'evich Chegerev
Anton Vladimirovich Cherkasov 1
Anton Vladimirovich Cherkasov
Kira Igorevna Pashanova 1
Kira Igorevna Pashanova
Irina Vasilievna Ershova 1
Irina Vasilievna Ershova
Olesya Yuryevna Trofimova 1
Olesya Yuryevna Trofimova
Aleksandr Vladimirovich Piskunov 1
Aleksandr Vladimirovich Piskunov
Published 2021-04-28
CommunicationVolume 31, Issue 3, 330-333
6
Share
Cite this
GOST
 | 
Cite this
GOST Copy
Arsenyeva K. V. et al. Facile synthesis of digermylene oxide and its reactivity towards vanadocene: the first example of Cp2V–germylene coordination // Mendeleev Communications. 2021. Vol. 31. No. 3. pp. 330-333.
GOST all authors (up to 50) Copy
Arsenyeva K. V., Chegerev M. G., Cherkasov A. V., Pashanova K. I., Ershova I. V., Trofimova O. Y., Piskunov A. V. Facile synthesis of digermylene oxide and its reactivity towards vanadocene: the first example of Cp2V–germylene coordination // Mendeleev Communications. 2021. Vol. 31. No. 3. pp. 330-333.
RIS
 | 
Cite this
RIS Copy
TY - JOUR
DO - 10.1016/j.mencom.2021.04.016
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2021.04.016
TI - Facile synthesis of digermylene oxide and its reactivity towards vanadocene: the first example of Cp2V–germylene coordination
T2 - Mendeleev Communications
AU - Arsenyeva, Kseniya Vital'evna
AU - Chegerev, Maxim Gennad'evich
AU - Cherkasov, Anton Vladimirovich
AU - Pashanova, Kira Igorevna
AU - Ershova, Irina Vasilievna
AU - Trofimova, Olesya Yuryevna
AU - Piskunov, Aleksandr Vladimirovich
PY - 2021
DA - 2021/04/28
PB - Mendeleev Communications
SP - 330-333
IS - 3
VL - 31
ER -
BibTex
 | 
Cite this
BibTex (up to 50 authors) Copy
@article{2021_Arsenyeva,
author = {Kseniya Vital'evna Arsenyeva and Maxim Gennad'evich Chegerev and Anton Vladimirovich Cherkasov and Kira Igorevna Pashanova and Irina Vasilievna Ershova and Olesya Yuryevna Trofimova and Aleksandr Vladimirovich Piskunov},
title = {Facile synthesis of digermylene oxide and its reactivity towards vanadocene: the first example of Cp2V–germylene coordination},
journal = {Mendeleev Communications},
year = {2021},
volume = {31},
publisher = {Mendeleev Communications},
month = {Apr},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2021.04.016},
number = {3},
pages = {330--333},
doi = {10.1016/j.mencom.2021.04.016}
}
MLA
Cite this
MLA Copy
Arsenyeva, Kseniya Vital'evna, et al. “Facile synthesis of digermylene oxide and its reactivity towards vanadocene: the first example of Cp2V–germylene coordination.” Mendeleev Communications, vol. 31, no. 3, Apr. 2021, pp. 330-333. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2021.04.016.

Keywords

o-amidophenolate
germylene
N-heterocyclic carbene
vanadocene
X-ray diffraction

Abstract

Digermylene oxide was prepared by hydrolysis of O,N-heterocyclic germylene, and its reactivity was examined in situ. Its treatment with N-heterocyclic carbene produces dianionic digermylene oxide while its reaction with vanadocene gives the dinuclear derivative, a rare example of a compound containing the vanadium–germylene coordination bond. The product structures were confirmed by X-ray diffraction analysis.

References

2.
Akmalov T.R., Masoud S.M., Vorobyeva D.V., Dolgushin F.M., Nefedov S.E., Osipov S.N.
Mendeleev Communications, 2019
4.
Iron N-heterocyclic carbene complexes in homogeneous catalysis
5.
Nickel(ii) N-heterocyclic carbene complexes as efficient catalysts for the Suzuki—Miyaura reaction
Soliev S.B., Astakhov A.V., Pasyukov D.V., Chernyshev V.M.
Russian Chemical Bulletin, 2020
6.
Isolable Silylene‐based Catalysts Boost the Catalytic Efficiencies and Selectivity
9.
The transition-metal chemistry of amidinatosilylenes, -germylenes and -stannylenes
Álvarez-Rodríguez L., Cabeza J.A., García-Álvarez P., Polo D.
Coordination Chemistry Reviews, 2015
16.
Digermylene Oxide Complexes: Facile Synthesis and Reactivity
Siwatch R.K., Yadav D., Mukherjee G., Rajaraman G., Nagendran S.
Inorganic Chemistry, 2013
17.
The facile reduction of carbon dioxide to carbon monoxide with an amido-digermyne.
Li J., Hermann M., Frenking G., Jones C.
Angewandte Chemie - International Edition, 2012
19.
Synthesis and Reactivity Studies of Amido‐Substituted Germanium(I)/Tin(I) Dimers and Clusters
Kelly J.A., Juckel M., Hadlington T.J., Fernández I., Frenking G., Jones C.
Chemistry - A European Journal, 2018
21.
Reactivity of O,N-heterocyclic germylene and stannylene towards μ-dithio-bis(tricarbonyliron)
Arsenyeva K.V., Ershova I.V., Chegerev M.G., Cherkasov A.V., Aysin R.R., Lalov A.V., Fukin G.K., Piskunov A.V.
Journal of Organometallic Chemistry, 2020
22.
Tsys K.V., Chegerev M.G., Fukin G.K., Starikov A.G., Piskunov A.V.
Mendeleev Communications, 2020
23.
Multiple Reactivity of Sn II Complexes Bearing Catecholate and o ‐Amidophenolate Ligands
Chegerev M.G., Piskunov A.V., Maleeva A.V., Fukin G.K., Abakumov G.A.
European Journal of Inorganic Chemistry, 2016
24.
Insight into the Electron Density Distribution in an O,N-Heterocyclic Stannylene by High-Resolution X-ray Diffraction Analysis
Chegerev M.G., Piskunov A.V., Tsys K.V., Starikov A.G., Jurkschat K., Baranov E.V., Stash A.I., Fukin G.K.
European Journal of Inorganic Chemistry, 2019
25.
Tin(II) Complexes Based on N-Alkyl-Substituted o-Amidophenolate Ligands: Acid–Base and Redox Transformations
Piskunov A.V., Tsys K.V., Chegerev M.G., Cherkasov A.V.
Russian Journal of Coordination Chemistry/Koordinatsionnaya Khimiya, 2019
26.
Synthesis and reactivity of monomeric stannylene supported by the new tetradentate O,N,N,N-chelating ligand
Tsys K.V., Chegerev M.G., Pashanova K.I., Cherkasov A.V., Piskunov A.V.
Inorganica Chimica Acta, 2019
27.
Tsys K.V., Chegerev M.G., Fukin G.K., Piskunov A.V.
Mendeleev Communications, 2018
29.
Chemistry of Complexes of Group 14 Elements Based on Redox-Active Ligands of the o-Iminoquinone Type
Chegerev M.G., Piskunov A.V.
Russian Journal of Coordination Chemistry/Koordinatsionnaya Khimiya, 2018
30.
Redox Isomerism in Main-Group Chemistry: Tin Complex with o-Iminoquinone Ligands
Chegerev M.G., Piskunov A.V., Starikova A.A., Kubrin S.P., Fukin G.K., Cherkasov V.K., Abakumov G.A.
European Journal of Inorganic Chemistry, 2018
31.
10.1016/j.mencom.2021.04.016_bib0070
Gordon
The Chemist's Companion: A Handbook of Practical Data, Techniques, and References, 1972
32.
Bruker APEX3, Bruker AXS Inc., Madison, WI, 2018.
33.
Comparison of silver and molybdenum microfocus X-ray sources for single-crystal structure determination
Krause L., Herbst-Irmer R., Sheldrick G.M., Stalke D.
Journal of Applied Crystallography, 2015
34.
10.1016/j.mencom.2021.04.016_sbref0085a
Sheldrick
Acta Crystallogr., 2015
35.
10.1016/j.mencom.2021.04.016_sbref0085b
Sheldrick
Acta Crystallogr., 2015
36.
Preparation of Ti(IV) FluorideN-Heterocyclic Carbene Complexes
Nikiforov G.B., Roesky H.W., Jones P.G., Magull J., Ringe A., Oswald R.B.
Inorganic Chemistry, 2008
38.
A Highly Stable N-Heterocyclic Carbene Complex of Trichloro-oxo-vanadium(V) Displaying Novel Cl−Ccarbene Bonding Interactions
Abernethy C.D., Codd G.M., Spicer M.D., Taylor M.K.
Journal of the American Chemical Society, 2003
40.
‘Pincer’ dicarbene complexes of some early transition metals and uranium
Pugh D., Wright J.A., Freeman S., Danopoulos A.A.
Dalton Transactions, 2006
41.
Indenyl- and Fluorenyl-Functionalized N-Heterocyclic Carbene Complexes of Titanium, Zirconium, Vanadium, Chromium, and Yttrium
Downing S.P., Guadaño S.C., Pugh D., Danopoulos A.A., Bellabarba R.M., Hanton M., Smith D., Tooze R.P.
Organometallics, 2007
43.
Synthesis and structure of early transition metal NHC complexes
47.
Generation of the first representatives of the Schrock complexes of heavy carbene analogs
Lalov A.V., Egorov M.P., Nefedov O.M., Cherkasov V.K., Ermolaev N.L., Piskunov A.V.
Russian Chemical Bulletin, 2005
48.
Structural and electronic elucidation of a N-heterocyclic silylene vanadocene adduct
Hänninen M.M., Baldansuren A., Pugh T.
Dalton Transactions, 2017
49.
Binuclear Oxidovanadium(IV) Complex with the Bridging Chloranilate Ligand: Synthesis and Magnetic Properties
Fomenko I.S., Nadolinnyi V.A., Efimov N.N., Kokovkin V.V., Gushchin A.L.
Russian Journal of Coordination Chemistry/Koordinatsionnaya Khimiya, 2019
51.
Bis(aqua)bis(η5-cyclopentadienyl)vanadium(IV) bis(trifluoromethanesulfonate) tetrahydrofuran solvate: Synthesis and characterization
52.
Vanadocene complexes bearing N,N′-chelating ligands: Synthesis, structures and in vitro cytotoxic studies on the A549 lung adenocarcinoma cell line
Melounková L., Machálková A., Havelek R., Honzíček J., Řezáčová M., Císařová I., Peterová E., Vinklárek J.
Journal of Inorganic Biochemistry, 2019
53.
New Germanium Complexes Containing Ligands Based on 4,6‐Di‐tert‐butyl‐N‐(2,6‐diisopropylphenyl)‐o‐iminobenzoquinone in Different Redox States
Piskunov A.V., Aivaz'yan I.A., Poddel'sky A.I., Fukin G.K., Baranov E.V., Cherkasov V.K., Abakumov G.A.
European Journal of Inorganic Chemistry, 2008
54.
10.1016/j.mencom.2021.04.016_sbref0140a
Pankratov
Organomet. Chem. USSR, 1991
55.
10.1016/j.mencom.2021.04.016_sbref0140b
Eremenko
Zh. Neorg. Khim., 1996
56.
10.1016/j.mencom.2021.04.016_sbref0140c
Zhdanovich
Zh. Neorg. Khim., 1999