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Mendeleev Communications, 1996, Volume 6, Issue 3, Pages 119–120
DOI: https://doi.org/10.1070/MC1996v006n03ABEH000608
(Mi mendc4942)
 

This article is cited in 29 scientific papers (total in 29 papers)

Molecular mechanism of alkane oxidation involving binuclear iron complexes

V. S. Kulikova, O. N. Gritsenko, A. A. Shteinman

Institute of Problems of Chemical Physics, Russian Academy of Sciences, Chernogolovka, Moscow Region, Russian Federation
Abstract: The use of substrate probes for establishing the nature of intermediates and the mechanism of alkane oxidation by peroxides upon catalysis by binuclear iron complexes {[Fe2OL2 (H2O)2](ClO4)4, where L = bpy, 4,4′-Me2bpy or 5-NO2phen (bpy = bipyridine, phen = phenanthroline)}, the analysis of the dependence of test parameters on the nature of a substituent in a ligand and the effect of dioxygen all make it possible to diagnose a two-electron mechanism for the transfer of the oxygen atom from peroxide to the C–H bond of an alkane via metal complexes.
Document Type: Article
Language: English


Citation: V. S. Kulikova, O. N. Gritsenko, A. A. Shteinman, “Molecular mechanism of alkane oxidation involving binuclear iron complexes”, Mendeleev Commun., 6:3 (1996), 119–120
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  • https://www.mathnet.ru/eng/mendc/v6/i3/p119
  • This publication is cited in the following 29 articles:
    1. A. A. Shteinman, “Bioinspired Oxidation of Methane: From Academic Models of Methane Monooxygenases to Direct Conversion of Methane to Methanol”, Kinet Catal, 61:3 (2020), 339  crossref
    2. Evgenii P. Talsi, Denis G. Samsonenko, Roman V. Ottenbacher, Konstantin P. Bryliakov, “Highly Enantioselective C-H Oxidation of Arylalkanes with H2O2 in the Presence of Chiral Mn‐Aminopyridine Complexes”, ChemCatChem, 9:24 (2017), 4580  crossref
    3. Biswanath Das, Afnan Al‐Hunaiti, Matti Haukka, Serhiy Demeshko, Steffen Meyer, Albert A. Shteinman, Franc Meyer, Timo Repo, Ebbe Nordlander, “Catalytic Oxidation of Alkanes and Alkenes by H2O2 with a μ‐Oxido Diiron(III) Complex as Catalyst/Catalyst Precursor”, Eur J Inorg Chem, 2015:21 (2015), 3590  crossref
    4. Michaela Grau, George J. P. Britovsek, Topics in Organometallic Chemistry, 50, Iron Catalysis II, 2015, 145  crossref
    5. Xitong Ma, Na Xing, Qiong Wu, Liting Xu, Yongheng Xing, “Investigation into experimental conditions and factors for cyclohexane oxidation with VO(acac)2”, Chem. Res. Chin. Univ., 30:6 (2014), 991  crossref
    6. Evgenii P. Talsi, Konstantin P. Bryliakov, “Chemo- and stereoselective CH oxidations and epoxidations/cis-dihydroxylations with H2O2, catalyzed by non-heme iron and manganese complexes”, Coordination Chemistry Reviews, 256:13-14 (2012), 1418  crossref
    7. O. Y. Lyakin, A. A. Shteinman, “Oxo complexes of high-valence iron in oxidation catalysis”, Kinet Catal, 53:6 (2012), 694  crossref
    8. Bhaskar Biswas, Afnan Al‐Hunaiti, Minna T. Räisänen, Simone Ansaloni, Markku Leskelä, Timo Repo, Yen‐Tung Chen, Hui‐Lien Tsai, Anil D. Naik, Antoine P. Railliet, Yann Garcia, Rajarshi Ghosh, Niranjan Kole, “Efficient and Selective Oxidation of Primary and Secondary Alcohols Using an Iron(III)/Phenanthroline Complex: Structural Studies and Catalytic Activity”, Eur J Inorg Chem, 2012:28 (2012), 4479  crossref
    9. Anna Company, Julio Lloret, Laura Gómez, Miquel Costas, Catalysis by Metal Complexes, 38, Alkane C-H Activation by Single-Site Metal Catalysis, 2012, 143  crossref
    10. A. A. Shteinman, “Structural-functional modeling of non-heme oxygenases”, Russ Chem Bull, 60:7 (2011), 1290  crossref
    11. E. A. Turitsyna, A. A. Shteinman, “Structure and oxygenase activity of the iron(ii) complex with pyridylcarboxamide ligand”, Russ Chem Bull, 60:10 (2011), 2094  crossref
    12. Martin Jarenmark, Elena A. Turitsyna, Matti Haukka, Albert A. Shteinman, Ebbe Nordlander, “A monocarboxylate-bridged diiron(iii) μ-oxido complex that catalyzes alkane oxidation by hydrogen peroxide”, New J. Chem., 34:10 (2010), 2118  crossref
    13. E. A. Duban, K. P. Brylyakov, E. P. Talsi, “The nature of active species in catalytic systems based on non-heme iron complexes, hydrogen peroxide, and acetic acid for selective olefin epoxidation”, Kinet Catal, 49:3 (2008), 379  crossref
    14. Hirokazu Kobayashi, Ichiro Yamanaka, “High production of adamantane oxygenates in propionic acid using VO(acac)2 and Eu(OTf)3 with O2”, Journal of Molecular Catalysis A: Chemical, 294:1-2 (2008), 43  crossref
    15. Hirokazu Kobayashi, Ichiro Yamanaka, “Oxidation of adamantane with O2 catalysed by VO(acac)2 and reactivity of active species in acetic acid”, Journal of Molecular Catalysis A: Chemical, 294:1-2 (2008), 37  crossref
    16. E. A. Turitsyna, O. N. Gritsenko, A. A. Shteinman, “Effect of the hydrogen peroxide concentration in stereospecific oxidation of alkanes by models of non-heme oxygenases”, Kinet Catal, 48:1 (2007), 53  crossref
    17. O. N. Gritsenko, E. A. Gutkina, H. Ammon, M. Schmmel, A. A. Shteinman, “New phenanthroline iron complexes: Synthesis and catalytic activity in alkane oxidation with hydrogen peroxide”, Russ. J. Inorg. Chem., 52:1 (2007), 92  crossref
    18. Elena A. Gutkina, Vladimir M. Trukhan, Cortlandt G. Pierpont, Shaen Mkoyan, Vladimir V. Strelets, Ebbe Nordlander, Albert A. Shteinman, “Tetranuclear iron(iii) complexes of an octadentate pyridine-carboxylate ligand and their catalytic activity in alkane oxidation by hydrogen peroxide”, Dalton Trans., 2006, no. 3, 492  crossref
    19. Stefania Tanase, Elisabeth Bouwman, Advances in Inorganic Chemistry, 58, 2006, 29  crossref
    20. Georgiy B. Shul'pin, Camilla C. Golfeto, Georg Süss-Fink, Lidia S. Shul'pina, Dalmo Mandelli, “Alkane oxygenation with H2O2 catalysed by FeCl3 and 2,2′-bipyridine”, Tetrahedron Letters, 46:27 (2005), 4563  crossref
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