Sergei Kryatov

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1998-2005 Tufts University, Boston 
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"Sergei Kryatov"
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Piquette MC, Kryatov SV, Rybak-Akimova EV. (2019) Kinetic Studies on the Oxoiron(IV) Complex with Tetradentate Aminopyridine Ligand PDP*: Restoration of Catalytic Activity by Reduction with HO. Inorganic Chemistry
Sun X, Kryatov SV, Rybak-Akimova EV. (2013) Kinetic insights into the reactivity of the intermediates generated from hydrogen peroxide and diiron(III) complex with tris(picolyl)amine (TPA). Dalton Transactions (Cambridge, England : 2003). 42: 4427-35
Korendovych IV, Kryatov SV, Rybak-Akimova EV. (2007) Dioxygen activation at non-heme iron: insights from rapid kinetic studies. Accounts of Chemical Research. 40: 510-21
Soper JD, Kryatov SV, Rybak-Akimova EV, et al. (2007) Proton-directed redox control of O-O bond activation by heme hydroperoxidase models. Journal of the American Chemical Society. 129: 5069-75
Korendovych IV, Makhlynets OV, Buzak SK, et al. (2006) (1R,2R)-(+)-4,4′-Di-terf-butyl-2,2′-[1,2-diphenyl-ethane-1, 2-diylbis(nitrilomethylidyne)]diphenol Acta Crystallographica Section E: Structure Reports Online. 62: o1240-o1242
Taktak S, Kryatov SV, Haas TE, et al. (2006) Diiron(III) oxo-bridged complexes with BPMEN and additional monodentate or bidentate ligands: Synthesis and reactivity in olefin epoxidation with H2O2 Journal of Molecular Catalysis a: Chemical. 259: 24-34
Korendovych IV, Kryatov SV, Reiff WM, et al. (2005) Diiron(II) mu-aqua-mu-hydroxo model for non-heme iron sites in proteins. Inorganic Chemistry. 44: 8656-8
Stephens FH, Johnson MJ, Cummins CC, et al. (2005) Mechanism of white phosphorus activation by three-coordinate molybdenum(III) complexes: a thermochemical, kinetic, and quantum chemical investigation. Journal of the American Chemical Society. 127: 15191-200
Kryatov SV, Rybak-Akimova EV, Schindler S. (2005) Kinetics and mechanisms of formation and reactivity of non-heme iron oxygen intermediates. Chemical Reviews. 105: 2175-226
Kryatov SV, Taktak S, Korendovych IV, et al. (2005) Dioxygen binding to complexes with Fe(II)2(mu-OH)2 cores: steric control of activation barriers and O2-adduct formation. Inorganic Chemistry. 44: 85-99
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