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Dive into the research topics where Sergey N. Ivanov is active.

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Featured researches published by Sergey N. Ivanov.


Journal of Physical Chemistry A | 2008

Molecular Structure and Conformations of para-Methylbenzene Sulfonamide and ortho-Methylbenzene Sulfonamide: Gas Electron Diffraction and Quantum Chemical Calculations Study

Vjacheslav M. Petrov; Georgiy V. Girichev; Heinz Oberhammer; V. N. Petrova; N. I. Giricheva; and Anna V. Bardina; Sergey N. Ivanov

The molecular structure and conformational properties of para-methylbenzene sulfonamide (4-MBSA) and ortho-methylbenzene sulfonamide (2-MBSA) have been studied by gas electron diffraction (GED) and quantum chemical methods (B3LYP/6-311+G** and MP2/6-31G**). Quantum chemical calculations predict the existence of two conformers for 4-MBSA with the S-N bond perpendicular to the benzene plane and the NH2 group either eclipsing or staggering the S-O bonds of the SO2 group. Both conformers possess CS symmetry. The eclipsed form is predicted to be favored by DeltaE = 0.63 kcal/mol (B3LYP) or 1.00 kcal/mol (MP2). According to the calculations, the S-N bond in 2-MBSA can possess planar direction opposite the methyl group (phi(C2C1SN) = 180 degrees ) or nonplanar direction (phi(C2C1SN) approximately 60 degrees ). In both cases, the NH2 group can adopt eclipsed or staggered orientation, resulting in a total of four stable conformers. The nonplanar eclipsed conformer (C1 symmetry) and the planar eclipsed form (CS symmetry) are predicted to be favored. According to the GED analysis, the saturated vapor over solid 4-MBSA at T = 151(3) degrees C consists as mixture of the eclipsed (78(19) %) and staggered (22(19) %) forms. The saturated vapor over solid 2-MBSA at T = 157(3) degrees C consists as a mixture of the nonplanar eclipsed (69(11) %) and planar eclipsed (31(11) %) forms.


Journal of Structural Chemistry | 2011

Gas electron diffraction and quantum chemical studies of the molecular structure of 2-nitrobenzenesulfonic acid

V. M. Petrov; N. I. Giricheva; G. V. Girichev; V. N. Petrova; Sergey N. Ivanov; A. V. Bardina

A combined gas electron diffraction and quantum chemical (B3LYP/6-311+G**, B3LYP/cc-pVTZ) study of the molecular structure of 2-nitrobenzenesulfonic acid (2-NBSA) is performed. Quantum chemical calculations show that the 2-NBSA molecule has five conformers, and the Gibbs energy of one of them is lower by more than 4.5 kcal/mol than the energy of the other conformers. It is found experimentally that the saturated vapor of 2-NBSA at T = 394(5) K contains only the low-energy conformer that has an intramolecular hydrogen bond between the H atom of the hydroxyl group and one of the O atoms of the NO2 group. The C-C-S-O(H) torsion angle determining the position of the S-O(H) bond is −72(7)°, while the NO2 group is substantially turned relative to the benzene ring plane (C1-C2-N-O = 40(5)°). The following experimental values of the internuclear distances are obtained for this conformer (Å): rh1(C-H)av = 1.07(2), rh1(C-C)av = 1.401(4), rh1(C-S) = 1.767(6), rh1(S=O)av = 1.412(4), rh1(S-O) = 1.560(6), rh1(N-O)av = 1.217(5), rh1(C-N) = 1.461(8), rh1(O-H) = 0.99(3).


Journal of Physical Chemistry A | 2015

Structures and intriguing conformational behavior of 1- and 2-naphthalenesulfonamides as determined by gas-phase electron diffraction and computational methods.

N. I. Giricheva; Vjacheslav M. Petrov; Marwan Dakkouri; Heinz Oberhammer; V. N. Petrova; Sergey A. Shlykov; Sergey N. Ivanov; Georgiy V. Girichev

The saturated vapors of 1- and 2-naphthalenesulfonamides (1-NaphSA and 2-NaphSA) were studied by the gas-phase electron diffraction/mass-spectrometric method at 413(9) and 431(9) K. According to quantum chemical calculations (DFT/B3LYP and MP2 with cc-pVDZ, aug-cc-pVDZ, cc-pVTZ, and aug-cc-pVTZ basis set) 1-NaphSA possesses four conformers with different orientations of the SO2NH2 fragment relative to the naphthalene frame and eclipsed or staggered orientation of the N-H and S═O bonds, whereas 2-NaphSA possesses only two conformers with different orientations of the N-H and S═O bonds. It was experimentally established that vapors over 1-NaphSA and 2-NaphSA exist predominantly (up to 75 mol %) of low-energy conformers of C1 symmetry in which the C-S-N planes deviate from perpendicular orientation relative to the naphthalene skeleton with near eclipsed orientation of the N-H and S═O bonds of the SO2NH2 fragment. The following geometrical parameters (Å and degrees) of the dominant conformers were derived: r(h1)(C-H) = 1.089(4), r(h1)(C-C)av = 1.411(3), r(h1)(C-S) = 1.761(10), r(h1)(S-O)av = 1.425(3), r(h1)(S-N) = 1.666(10), ∠C-C1-C = 119.8(2), ∠C1-S-N = 104.5(22), C9-C1-S-N = 69.5(30) for 1-NaphSA; r(h1)(C-H) = 1.083(5), r(h1)(C-C)av = 1.411(3), r(h1)(C-S) = 1.780(7), r(h1)(S-O)av = 1.427(4), r(h1)(S-N) = 1.668(6), ∠C-C2-C = 123.0(3), ∠C2-S-N = 103.6(19), C1-C2-S-N = 110(10) for 2-NaphSA. The connection between nonequivalence of the C-C bonds in the naphthalene frame and spatial orientation of the substituents SO2NH2 is discussed. Transition states between conformers and enantiomers were determined.


Russian Journal of Physical Chemistry A | 2014

Energies of the gas-phase deprotonation of nitro-substituted benzenesulfonic and benzoic acids: The role of the conformation isomerism of sulfonic acids

Sergey N. Ivanov; N. I. Giricheva; T. V. Nurkevich; M. S. Fedorov

The Gibbs energies of deprotonation ΔrG298○ of gaseous benzoic acid (BA), benzenesulfonic acid (BSA) and their six mono-, di-, and trinitro-substituted derivatives are calculated by means of B3LYP/cc-pVTZ and MP2/6-311++G**. The dependences of ΔrG298○ on the number and the position of nitro groups in an aromatic ring are revealed, as is the possibility of intramolecular hydrogen bond (IHB) formation in ortho-substituted acids. It is found that the deprotonation of conformers of ortho-nitro-substituted BSA without IHBs requires less energy (by 4–5 kcal/mol) than for conformers with IHBs. It is shown that the ΔrG298○ values for substituted BA are ∼22 kcal/mol higher than the corresponding values for substituted BSA. A trend of diminishing ΔrG298○ for nitro-substituted acids is observed when the number of nitro groups is increased, and di- and trinitro-substituted BSA may therefore be considered superstrong acids.


Journal of Structural Chemistry | 2011

Gas electron diffraction and quantum chemical study of the structure of a 2-nitrobenzenesulfonyl chloride molecule

V. M. Petrov; N. I. Giricheva; G. V. Girichev; A. V. Bardina; V. N. Petrova; Sergey N. Ivanov

A combined gas electron diffraction and quantum chemical (B3LYP/6-311+G**, B3LYP/cc-pVTZ, B3LYP/cc-pVTZ, midix (Cl), and MP2/cc-pVTZ) study of the structure of a 2-NO2-C6H4-SO2Cl molecule is performed. It is found experimentally that at a temperature of 345(5) K the gas phase contains two conformers of the C1 symmetry. Conformer I with a nearly perpendicular arrangement of the S-Cl bond with respect to the benzene ring plane (the C(NO2)-C-S-Cl torsion angle is 84(3)°) is contained predominantly (69(12)%). In conformer II, the S-Cl bond is located near the benzene ring plane (the C(NO2)-C-S-Cl angle is 172(3)°). The following experimental internuclear distances (Å) are obtained for conformer I: rh1(C-H) = 1.064(15), rh1(C-C)av = 1.397(3), rh1(C-S) = 1.761(6), rh1(S-O)av = 1.426(4), rh1(S-Cl) = 2.043(5), rh1(N-O)av = 1.222(4), rh1(C-N) = 1.485(16). In both conformers, the NO2 group is turned by more than 30° relative to the benzene ring plane.


Journal of Organic Chemistry | 2006

Molecular Structure and Conformations of Benzenesulfonamide: Gas Electron Diffraction and Quantum Chemical Calculations

Vjacheslav M. Petrov; V. N. Petrova; Georgiy V. Girichev; Heinz Oberhammer; and Nina I. Giricheva; Sergey N. Ivanov


Journal of Structural Chemistry | 2007

Electron diffraction and quantum-chemical studies of the conformational properties of the 1,3-benzenedisulfochloride molecule

V. N. Petrova; V. M. Petrov; G. V. Girichev; Heinz Oberhammer; Sergey N. Ivanov


Journal of Molecular Structure | 2013

Interrelation of nonequivalent CC bonds of naphthalene frame and spatial orientation of substituents: Beta-naphthalene sulfonyl fluoride and beta-naphthalene sulfonyl chloride

N. I. Giricheva; Vjacheslav M. Petrov; Heinz Oberhammer; V. N. Petrova; Marwan Dakkouri; Sergey N. Ivanov; Georgiy V. Girichev


Journal of Structural Chemistry | 2009

Gas-phase electron diffraction and quantum chemical study of the structure of the 4-nitrobenzene sulfonyl chloride molecule

V. M. Petrov; V. N. Petrova; G. V. Girichev; N. I. Giricheva; Heinz Oberhammer; A. V. Bardina; Sergey N. Ivanov; A. V. Krasnov


Structural Chemistry | 2013

Molecular structure and barriers to internal rotation of α-naphthalenesulfonyl chloride: a study by gas-phase electron diffraction and quantum chemical calculations

N. I. Giricheva; Georgiy V. Girichev; Marwan Dakkouri; Sergey N. Ivanov; Vjacheslav M. Petrov; V. N. Petrova

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V. N. Petrova

Ivanovo State University of Chemistry and Technology

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Georgiy V. Girichev

Ivanovo State University of Chemistry and Technology

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V. M. Petrov

Ivanovo State University

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A. V. Bardina

Ivanovo State University

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G. V. Girichev

Ivanovo State University of Chemistry and Technology

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M. S. Fedorov

Ivanovo State University

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