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Synthesis, structure and catalytic properties of Pdii-based bimetallic complexes with ferrocenecarboxylic acid

Anna Sergeevna Popova 1, 2
Anna Sergeevna Popova
Nadezhda K Ogarkova 2
Nadezhda K Ogarkova
Ivan Vladimirovich Skabitsky 1
Ivan Vladimirovich Skabitsky
Ekaterina Konstantinovna Kultyshkina
Ilya Arkad'evich Yakushev 1
Ilya Arkad'evich Yakushev
Michael Natanovich Vargaftik 1
Michael Natanovich Vargaftik
Published 2022-09-05
CommunicationVolume 32, Issue 5, 576-578
5
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Popova A. S. et al. Synthesis, structure and catalytic properties of Pdii-based bimetallic complexes with ferrocenecarboxylic acid // Mendeleev Communications. 2022. Vol. 32. No. 5. pp. 576-578.
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Popova A. S., Ogarkova N. K., Shapovalov S. S., Skabitsky I. V., Kultyshkina E. K., Yakushev I. A., Vargaftik M. N. Synthesis, structure and catalytic properties of Pdii-based bimetallic complexes with ferrocenecarboxylic acid // Mendeleev Communications. 2022. Vol. 32. No. 5. pp. 576-578.
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TY - JOUR
DO - 10.1016/j.mencom.2022.09.002
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2022.09.002
TI - Synthesis, structure and catalytic properties of Pdii-based bimetallic complexes with ferrocenecarboxylic acid
T2 - Mendeleev Communications
AU - Popova, Anna Sergeevna
AU - Ogarkova, Nadezhda K
AU - Shapovalov, Sergey Sergeevich
AU - Skabitsky, Ivan Vladimirovich
AU - Kultyshkina, Ekaterina Konstantinovna
AU - Yakushev, Ilya Arkad'evich
AU - Vargaftik, Michael Natanovich
PY - 2022
DA - 2022/09/05
PB - Mendeleev Communications
SP - 576-578
IS - 5
VL - 32
ER -
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@article{2022_Popova,
author = {Anna Sergeevna Popova and Nadezhda K Ogarkova and Sergey Sergeevich Shapovalov and Ivan Vladimirovich Skabitsky and Ekaterina Konstantinovna Kultyshkina and Ilya Arkad'evich Yakushev and Michael Natanovich Vargaftik},
title = {Synthesis, structure and catalytic properties of Pdii-based bimetallic complexes with ferrocenecarboxylic acid},
journal = {Mendeleev Communications},
year = {2022},
volume = {32},
publisher = {Mendeleev Communications},
month = {Sep},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2022.09.002},
number = {5},
pages = {576--578},
doi = {10.1016/j.mencom.2022.09.002}
}
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Popova, Anna Sergeevna, et al. “Synthesis, structure and catalytic properties of Pdii-based bimetallic complexes with ferrocenecarboxylic acid.” Mendeleev Communications, vol. 32, no. 5, Sep. 2022, pp. 576-578. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2022.09.002.

Keywords

e]pentalene
dibenzo[a
diphenylacetylene
ferrocenecarboxylic acid
homogeneous catalysis
ligand exchange
Palladium complexes
XRD analysis

Abstract

Novel highly soluble palladium-based complexes with ferrocenecarboxylic acid of general formula [Pd(lut)2(FcCOO)2] (lut is 2,6-or 3,4-lutidines) were synthesized and structurally characterized by single-crystal X-ray diffraction. The catalytic oxidation of 1,2-diphenyl-acetylene with these complexes gave dibenzo[a,e]pentalene derivative along with other products.

References

1.
Heterometallic Palladium(II)-Indium(III) and -Gallium(III) Acetate-Bridged Complexes: Synthesis, Structure, and Catalytic Performance in Homogeneous Alkyne and Alkene Hydrogenation
Stolarov I.P., Yakushev I.A., Churakov A.V., Cherkashina N.V., Smirnova N.S., Khramov E.V., Zubavichus Y.V., Khrustalev V.N., Markov A.A., Klyagina A.P., Kornev A.B., Martynenko V.M., Gekhman A.E., Vargaftik M.N., Moiseev I.I., et. al.
Inorganic Chemistry, 2018
2.
Multimetallic Catalysis Based on Heterometallic Complexes and Clusters
Buchwalter P., Rosé J., Braunstein P.
Chemical Reviews, 2014
3.
Markov P.V., Bragina G.O., Rassolov A.V., Mashkovsky I.S., Baeva G.N., Tkachenko O.P., Yakushev I.A., Vargaftik M.N., Stakheev A.Y.
Mendeleev Communications, 2016
5.
Novel approach to rhenium oxide catalysts for selective oxidation of methanol to DMM
Nikonova O.A., Capron M., Fang G., Faye J., Mamede A., Jalowiecki-Duhamel L., Dumeignil F., Seisenbaeva G.A.
Journal of Catalysis, 2011
7.
Nanostructured PtZn intermetallic compound: Controlled formation from PtZn(CH3COO)4 molecular precursor and tests of catalytic properties
Smirnova N.S., Khramov E.V., Stolarov I.P., Yakushev I.A., Baeva G.N., Bragina G.O., Belova E.V., Ishchenko A.V., Popova A.S., Zubavichus Y.V., Vargaftik M.N., Stakheev A.Y.
Intermetallics, 2021
8.
Stakheev A.Y., Smirnova N.S., Krivoruchenko D.S., Baeva G.N., Mashkovsky I.S., Yakushev I.A., Vargaftik M.N.
Mendeleev Communications, 2017
9.
Nanosized catalysts of oxygen reduction reaction prepared on the base of bimetallic cluster compounds
Grinberg V.A., Mayorova N.A., Pasynsky A.A., Shiryaev A.A., Vysotskii V.V., Stolarov I.P., Yakushev I.A., Cherkashina N.V., Vargaftik M.N., Zubavichus Y.V., Trigub A.L.
Electrochimica Acta, 2019
12.
Nazarov I.V., Bermesheva E.V., Potapov K.V., Khesina Z.B., Il'in M.M., Melnikova E.K., Bermeshev M.V.
Mendeleev Communications, 2021
13.
Ruthenium and Nickel Complexes with Cymanthrenenecarboxylic Acid: Synthesis and Structures
Shapovalov S.S., Skabitskii I.V.
Russian Journal of Coordination Chemistry/Koordinatsionnaya Khimiya, 2021
15.
Synthesis and Structure of Heterometallic Palladium and Iron Complexes
Yakushev I.A., Dyuzheva M.A., Stebletsova I.A., Kornev A.B., Cherkashina N.V., Vargaftik M.N.
Russian Journal of Coordination Chemistry/Koordinatsionnaya Khimiya, 2022
16.
667. Carboxylates of palladium, platinum, and rhodium, and their adducts
Stephenson T.A., Morehouse S.M., Powell A.R., Heffer J.P., Wilkinson G.
Journal of the Chemical Society (Resumed), 1965
17.
A cartography of the van der Waals territories
19.
Palladium‐Catalyzed Aerobic α,β‐Dehydrogenation of Carboxylic Acids
Shibatani A., Kataoka Y., Ura Y.
Asian Journal of Organic Chemistry, 2021
20.
Belok/XSA Diffraction Beamline for Studying Crystalline Samples at Kurchatov Synchrotron Radiation Source
Svetogorov R.D., Dorovatovskii P.V., Lazarenko V.A.
Crystal Research and Technology, 2020
21.
APEX3, SAINT and SADABS, Bruker AXS, Madison, WI, 2016.
22.
10.1016/j.mencom.2022.09.002_b0100
Kabsch
Acta Crystallogr., 2010
23.
10.1016/j.mencom.2022.09.002_b0105
Sheldrick
Acta Crystallogr., 2015
24.
10.1016/j.mencom.2022.09.002_b0110
Sheldrick
Acta Crystallogr., 2015
25.
OLEX2: a complete structure solution, refinement and analysis program
Dolomanov O.V., Bourhis L.J., Gildea R.J., Howard J.A., Puschmann H.
Journal of Applied Crystallography, 2009
26.
Dinaphthopentalenes: pentalene derivatives for organic thin-film transistors.
Kawase T., Fujiwara T., Kitamura C., Konishi A., Hirao Y., Matsumoto K., Kurata H., Kubo T., Shinamura S., Mori H., Miyazaki E., Takimiya K.
Angewandte Chemie - International Edition, 2010
28.
New reactions of a dibenzo[a,e]pentalene.
Saito M., Nakamura M., Tajima T.
Chemistry - A European Journal, 2008