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Dive into the research topics where Olga P. Kryatova is active.

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Featured researches published by Olga P. Kryatova.


Journal of the American Chemical Society | 2009

Coordination-mode control of bound nitrile radical complex reactivity: Intercepting end-on nitrile-mo(III) radicals at low temperature

Meaghan E. Germain; Manuel Temprado; Annie Castonguay; Olga P. Kryatova; Elena V. Rybak-Akimova; John J. Curley; Arjun Mendiratta; Yi Chou Tsai; Christopher C. Cummins; Rajeev Prabhakar; James E. McDonough; Carl D. Hoff

Variable temperature equilibrium studies were used to derive thermodynamic data for formation of eta(1) nitrile complexes with Mo(N[(t)Bu]Ar)(3), 1. (1-AdamantylCN = AdCN: DeltaH(degrees) = -6 +/- 2 kcal mol(-1), DeltaS(degrees) = -20 +/- 7 cal mol(-1) K(-1). C(6)H(5)CN = PhCN: DeltaH(degrees) = -14.5 +/- 1.5 kcal mol(-1), DeltaS(degrees) = -40 +/- 5 cal mol(-1) K(-1). 2,4,6-(H(3)C)(3)C(6)H(2)CN = MesCN: DeltaH(degrees) = -15.4 +/- 1.5 kcal mol(-1), DeltaS(degrees) = -52 +/- 5 cal mol(-1) K(-1).) Solution calorimetric studies show that the enthalpy of formation of 1-[eta(2)-NCNMe(2)] is more exothermic (DeltaH(degrees) = -22.0 +/- 1.0 kcal mol(-1)). Rate and activation parameters for eta(1) binding of nitriles were measured by stopped flow kinetic studies (AdCN: DeltaH(on)(++) = 5 +/- 1 kcal mol(-1), DeltaS(on)(++) = -28 +/- 5 cal mol(-1) K(-1); PhCN: DeltaH(on)(++) = 5.2 +/- 0.2 kcal mol(-1), DeltaS(on)(++) = -24 +/- 1 cal mol(-1) K(-1); MesCN: DeltaH(on)(++) = 5.0 +/- 0.3 kcal mol(-1), DeltaS(on)(++) = -26 +/- 1 cal mol(-1) K(-1)). Binding of Me(2)NCN was observed to proceed by reversible formation of an intermediate complex 1-[eta(1)-NCNMe(2)] which subsequently forms 1-[eta(2)-NCNMe(2)]: DeltaH(++)(k1) = 6.4 +/- 0.4 kcal mol(-1), DeltaS(++)(k1) = -18 +/- 2 cal mol(-1) K(-1), and DeltaH(++)(k2) = 11.1 +/- 0.2 kcal mol(-1), DeltaS(++)(k2) = -7.5 +/- 0.8 cal mol(-1) K(-1). The oxidative addition of PhSSPh to 1-[eta(1)-NCPh] is a rapid second-order process with activation parameters: DeltaH(++) = 6.7 +/- 0.6 kcal mol(-1), DeltaS(++) = -27 +/- 4 cal mol(-1) K(-1). The oxidative addition of PhSSPh to 1-[eta(2)-NCNMe(2)] also followed a second-order rate law but was much slower: DeltaH(++) = 12.2 +/- 1.5 kcal mol(-1) and DeltaS(++) = -25.4 +/- 5.0 cal mol(-1) K(-1). The crystal structure of 1-[eta(1)-NC(SPh)NMe(2)] is reported. Trapping of in situ generated 1-[eta(1)-NCNMe(2)] by PhSSPh was successful at low temperatures (-80 to -40 degrees C) as studied by stopped flow methods. If 1-[eta(1)-NCNMe(2)] is not intercepted before isomerization to 1-[eta(2)-NCNMe(2)] no oxidative addition occurs at low temperatures. The structures of key intermediates have been studied by density functional theory, confirming partial radical character of the carbon atom in eta(1)-bound nitriles. A complete reaction profile for reversible ligand binding, eta(1) to eta(2) isomerization, and oxidative addition of PhSSPh has been assembled and gives a clear picture of ligand reactivity as a function of hapticity in this system.


Tetrahedron Letters | 2003

Proton-induced supramolecular dimerization of aminomethylbenzo-15-crown-5 accompanied by a covalent dimerization of cyanoborohydride anion

Olga P. Kryatova; Ivan V. Korendovych; Elena V. Rybak-Akimova

Abstract— Reductive amination of 4-formyl[benzo-15-crown-5] with sodium cyanoborohydride in the NH 4 Ac/MeOH mediumfollowed by acid addition and extraction with CHCl 3 unexpectedly lead to the isolation of the salt (B15C5-CH 2 -NH 3 ) + -(H 3 BCNBH 2 CN) − with an unusual dicyanodiborohydride anion. The self-complementary 4-ammoniomethyl[benzo-15-crown-5]cation was found to exist as a supramolecular dimer in the solid state, acetonitrile solution, and gas phase as revealed by X-raycrystallography, NMR and mass spectrometry, respectively.


Inorganic Chemistry | 2002

Nickel(II) Complexes with Tetra- and Pentadentate Aminopyridine Ligands: Synthesis, Structure, Electrochemistry, and Reduction to Nickel(I) Species

Sergey V. Kryatov; B. Sharmila Mohanraj; Vladislav V. Tarasov; Olga P. Kryatova; Elena V. Rybak-Akimova; Bharathi Nuthakki; James F. Rusling; Richard J. Staples; Alexander Y. Nazarenko


Tetrahedron | 2004

Complexes of benzo-15-crown-5 with protonated primary amines and diamines ☆

Olga P. Kryatova; Ivan V. Korendovych; Elena V. Rybak-Akimova


Journal of the American Chemical Society | 2005

Mechanism of white phosphorus activation by three-coordinate molybdenum(III) complexes: a thermochemical, kinetic, and quantum chemical investigation.

Frances H. Stephens; Marc J. A. Johnson; Christopher C. Cummins; Olga P. Kryatova; Sergey V. Kryatov; Elena V. Rybak-Akimova; J. Eric Mcdonough; Carl D. Hoff


Tetrahedron | 2003

Metal-containing ditopic receptors for molecular recognition of diammonium cations

Olga P. Kryatova; Alexander G. Kolchinski; Elena V. Rybak-Akimova


Inorganic Chemistry | 2007

Iron(II) complexes with amide-containing macrocycles as non-heme porphyrin analogues

Ivan V. Korendovych; Olga P. Kryatova; William M. Reiff; Elena V. Rybak-Akimova


Inorganic Chemistry | 2004

Comparative Kinetics and Mechanism of Oxygen and Sulfur Atom Transfer Reactions Mediated by Bis(dithiolene) Complexes of Molybdenum and Tungsten

Jun-Jieh Wang; Olga P. Kryatova; Elena V. Rybak-Akimova; R. H. Holm


Organometallics | 2004

Small-molecule activation by molybdaziridine hydride complexes: Mechanistic sequence of the small-molecule binding and molybdaziridine ring-opening steps

Frances H. Stephens; Joshua S. Figueroa; Christopher C. Cummins; Olga P. Kryatova; Sergey V. Kryatov; Elena V. Rybak-Akimova; J. Eric Mcdonough; Carl D. Hoff


Inorganic Chemistry | 2005

Solution calorimetric and stopped-flow kinetic studies of the reaction of *Cr(CO)3C5Me5 with PhSe-SePh and PhTe-TePh. Experimental and theoretical estimates of the Se-Se, Te-Te, H-Se, and H-Te bond strengths.

James E. McDonough; John J. Weir; Matthew J. Carlson; Carl D. Hoff; Olga P. Kryatova; Elena V. Rybak-Akimova; Christopher R. Clough; Christopher C. Cummins

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Christopher C. Cummins

Massachusetts Institute of Technology

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Arjun Mendiratta

Massachusetts Institute of Technology

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Frances H. Stephens

Massachusetts Institute of Technology

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