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Original Articles

Electrochemical phosphorylation of arenes catalyzed by cobalt under oxidative and reductive conditions

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon &
Pages 506-509 | Received 29 Sep 2018, Accepted 23 Oct 2018, Published online: 30 Dec 2018

References

  • Gryaznova, T.; Dudkina, Y.; Khrizanforov, M.; Sinyashin, O.; Kataeva, O.; Budnikova, Y. Electrochemical Properties of Diphosphonate-Bridged Palladacycles and Their Reactivity in Arene Phosphonation. J. Solid State Electrochem. 2015, 19, 2665–2672.
  • Khrizanforova, V. V.; Musina, E. I.; Khrizanforov, M. N.; Gerasimova, T. P.; Katsyuba, S. A.; Spiridonova, Y. S.; Islamov, D. R.; Kataeva, O. N.; Karasik, A. A.; Sinyashin, O. G.; et al. Unexpected Ligand Effect on the Catalytic Reaction Rate Acceleration for Hydrogen Production Using Biomimetic Nickel Electrocatalysts with 1,5-Diaza-3,7-Diphosphacyclooctanes. J. Organomet. Chem. 2015, 789–790, 14–21.
  • Strekalova, S. O.; Khrizanforov, M. N.; Gryaznova, T. V.; Khrizanforova, V. V.; Budnikova, Y. H. Electrochemical Phosphorylation of Coumarins Catalyzed by Transition Metal Complexes (Ni—Mn, Co—Mn). Russ. Chem. Bull. 2016, 65, 1295–1298.
  • Khrizanforov, M. N.; Strekalova, S. O.; Gryaznova, T. V.; Khrizanforova, V. V.; Budnikova, Y. H. New Method of Metal-Induced Oxidative Phosphorylation of Benzene. Russ. Chem. Bull. 2015, 64, 1926–1932.
  • Budnikova, Y.; Gryaznova, T.; Grinenko, V.; Dudkina, Y.; Khrizanforov, M. N. Eco-Efficient Electrocatalytic C-P Bond Formation. Pure Appl. Chem. 2017, 89, 311–330.
  • Khrizanforov, M. N.; Strekalova, S. O.; Kholin, K. V.; Khrizanforova, V. V.; Kadirov, M. K.; Gryaznova, T. V.; Budnikova, Y. H. Novel Approach to Metal-Induced Oxidative Phosphorylation of Aromatic Compounds. Catal. Today 2017, 279, 133–141.
  • Khrizanforov, M.; Khrizanforova, V.; Mamedov, V.; Zhukova, N.; Strekalova, S.; Grinenko, V.; Gryaznova, T.; Sinyashin, O.; Budnikova, Y. Single-Stage Synthetic Route to Perfluoroalkylated Arenes via Electrocatalytic Cross-Coupling of Organic Halides Using Co and Ni Complexes. J. Organomet. Chem. 2016, 820, 82–88.
  • Khrizanforov, M. N.; Fedorenko, S. V.; Mustafina, A. R.; Kholin, K. V.; Nizameev, I. R.; Strekalova, S. O.; Grinenko, V. V.; Gryaznova, T. V.; Zairov, R. R.; Mazzaro, R.; et al. Silica-Supported Silver Nanoparticles as an Efficient Catalyst for Aromatic C–H Alkylation and Fluoroalkylation. Dalton Trans. 2018, 47, 9608–9616.
  • Budnikova, Y. H.; Dudkina, Y. B.; Khrizanforov, M. N. Redox-Induced Aromatic C–H Bond Functionalization in Metal Complex Catalysis from the Electrochemical Point of View. Inorganics 2017, 5, 70–88.
  • Yurko, E. O.; Gryaznova, T. V.; Khrizanforova, V. V.; Khrizanforov, M. N.; Toropchina, A. V.; Budnikova, Y. H.; Sinyashin, O. G. Electrochemical Oxidative Phosphorylation of Azoles in the Presence of Silver Catalysts. Russ. Chem. Bull. 2018, 67, 102–107.
  • Khrizanforova, V. V.; Kholin, K. V.; Khrizanforov, M. N.; Kadirov, M. K.; Budnikova, Y. H. Electrooxidative CH/PH Functionalization as a Novel Way to Synthesize Benzo[b]Phosphole Oxides Mediated by Catalytic Amounts of Silver Acetate. New J. Chem. 2018, 42, 930–935.
  • Khrizanforova, V. V.; Khrizanforov, M. N.; Gryaznova, T. V.; Budnikova, Y. H. Electrochemical Pathway to CH/PH Functionalization of Diphenylphosphine Oxide. Phosphorus Sulfur Silicon Relat. Elem. 2016, 191, 1602–1603.
  • Gryaznova, T. V.; Khrizanforov, M. N.; Strekalova, S. O.; Budnikova, Y. H.; Sinyshin, O. G. Electrochemical Oxidative Phosphonation of Azoles. Phosphorus Sulfur Silicon Relat. Elem. 2016, 191, 1658–1659.
  • Mikhaylov, D.; Gryaznova, T.; Dudkina, Y.; Khrizanphorov, M.; Latypov, S.; Kataeva, O.; Vicic, D.; Sinyashin, O.; Budnikova, Y. Electrochemical Nickel-Induced Fluoroalkylation: synthetic, Structural and Mechanistic Study. Dalton Trans. 2012, 41, 165–172.
  • Dudkina, Y. B.; Khrizanforov, M. N.; Gryaznova, T. V.; Budnikova, Y. H. Prospects of Synthetic Electrochemistry in the Development of New Methods of Electrocatalytic Fluoroalkylation. J. Organomet. Chem. 2014, 751, 301–305.
  • Khrizanforov, M.; Gryaznova, T.; Sinyashin, O.; Budnikova, Y. Aromatic Perfluoroalkylation with Metal Complexes in Electrocatalytic Conditions. J. Organomet. Chem. 2012, 718, 101–104.
  • Khrizanforov, M.; Strekalova, S.; Khrizanforova, V.; Grinenko, V.; Kholin, K.; Kadirov, M.; Burganov, T.; Gubaidullin, A.; Gryaznova, T.; Sinyashin, O.; et al. Iron-Catalyzed Electrochemical C–H Perfluoroalkylation of Arenes. Dalton Trans. 2015, 44, 19674–19681.
  • Khrizanforov, M.; Strekalova, S.; Khrizanforova, V.; Dobrynin, A.; Kholin, K.; Gryaznova, T.; Grinenko, V.; Gubaidullin, A.; Kadirov, M. K.; Budnikova, Y. Cobalt-Catalyzed Green Cross-Dehydrogenative C(sp2)-H/P-H Coupling Reactions. Top. Catal. 2018, DOI: 10.1007/s11244-018-1014-2.
  • Khrizanforov, M.; Strekalova, S.; Kholin, K.; Khrizanforova, V.; Grinenko, V.; Gryaznova, T.; Budnikova, Y. One-Stage Synthesis of FcP(O)(OC 2 H 5 ) 2 from Ferrocene and α-Hydroxyethylphosphonate. RSC Adv. 2016, 6, 42701–42707.
  • Khrizanforov, M. N.; Arkhipova, D. M.; Shekurov, R. P.; Gerasimova, T. P.; Ermolaev, V. V.; Islamov, D. R.; Miluykov, V. A.; Kataeva, O. N.; Khrizanforova, V. V.; Sinyashin, O. G.; et al. Novel Paste Electrodes Based on Phosphonium Salt Room Temperature Ionic Liquids for Studying the Redox Properties of Insoluble Compounds. J. Solid State Electrochem. 2015, 19, 2883–2890.
  • Kataeva, O.; Metlushka, K.; Ivshin, K.; Kiiamov, A.; Alfonsov, V.; Khrizanforov, M.; Budnikova, Y.; Sinyashin, O.; Krupskaya, Y.; Kataev, V.; et al. Electron Transfer and Unusual Chemical Transformations of F4-TCNQ in a Reaction with Mn-Phthalocyanine. Eur. J. Inorg. Chem. 2018, 2018, 3344–3353.
  • Khrizanforov, M. N.; Fedorenko, S. V.; Strekalova, S. O.; Kholin, K. V.; Mustafina, A. R.; Zhilkin, M. Y.; Khrizanforova, V. V.; Osin, Y. N.; Salnikov, V. V.; Gryaznova, T. V.; et al. H. A Ni(III) Complex Stabilized by Silica Nanoparticles as an Efficient Nanoheterogeneous Catalyst for Oxidative C–H Fluoroalkylation. Dalton Trans. 2016, 45, 11976–11982.
  • Khrizanforov, M. N.; Gryaznova, T. V.; Mikhailov, D. Y.; Budnikova, Y. H.; Sinyashin, O. G. Electrocatalytic Fluoroalkylation of Olefins. Perfluoroalkylation of 2-Vinylpyridine. Russ. Chem. Bull. 2012, 61, 1560–1563.
  • Khrizanforov, M. N.; Strekalova, S. O.; Grinenko, V. V.; Khrizanforova, V. V.; Gryaznova, T. V.; Budnikova, Y. H. Fe and Ni-Catalyzed Electrochemical Perfluoroalkylation of C–H Bonds of Coumarins. Russ. Chem. Bull. 2017, 66, 1446–1449.
  • Grinenko, V. V.; Khrizanforov, M. N.; Strekalova, S. O.; Khrizanforova, V. V.; Kholin, K. V.; Gryaznova, T. V.; Budnikova, Y. H. Electrooxidative Phosphorylation of Coumarins by Bimetallic Catalytic Systems Ni(II)/Mn(II) or Co(II)/Mn(II). Phosphorus Sulfur Silicon Relat. Elem. 2016, 191, 1660–1661.
  • Strekalova, S. O.; Khrizanforov, M. N.; Shamsieva, A. V.; Grinenko, V. V.; Gryaznova, T. V.; Musina, E. I.; Karasik, A. A.; Budnikova, Y. H. Direct Phosphorylation of Pyridine in the Presence of Ni(BF 4 ) 2 Bpy and CoCl 2 Bpy Metal Complexes. Phosphorus Sulfur Silicon Relat. Elem. 2016, 191, 1545–1546.
  • Gryaznova, T. V.; Khrizanforova, V. V.; Kholin, K. V.; Khrizanforov, M. N.; Budnikova, Y. H. Selective Fluorination of Pyridine and Its Derivatives in the Presence of High-Oxidation-State Transition Metals. Russ. Chem. Bull. 2016, 65, 1798–1804.
  • Gryaznova, T. V.; Khrizanforov, M. N.; Kholin, K. V.; Vorotyntsev, M. A.; Gor’kov, K. V.; Talagaeva, N. V.; Dmitrieva, M. V.; Zolotukhina, E. V.; Budnikova, Y. H. Palladium Nanoparticles–Polypyrrole Composite as Effective Catalyst for Fluoroalkylation of Alkenes. Catal. Lett. 2018, 148, 3119–3125.

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