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Featured researches published by V.I. Kovalenko.


Journal of Colloid and Interface Science | 2011

Specific vapor sorption properties of phosphorus-containing dendrimers.

Alexander V. Gerasimov; Marat A. Ziganshin; Alexander E. Vandyukov; V.I. Kovalenko; Valery V. Gorbatchuk; Anne-Marie Caminade; Jean-Pierre Majoral

Specific combination of guest sorption properties was observed for phosphorus-containing dendrimers, which distinguish them from ordinary polymers and clathrate-forming hosts. The sorption capacity for 30 volatile guests, binding reversibility, guest desorption kinetics and guest exchange, glass transition behavior and ability to be plasticized with guest were studied for phosphorus dendrimers of different generations (G(1)-G(4) and G(9)) using quartz crystal microbalance sensor, FTIR microspectroscopy, atomic force microscopy, simultaneous thermogravimetry and differential scanning calorimetry combined with mass-spectrometry of evolved vapors. The dendrimers were found to have a different selectivity for different homological series of guests, high glass transition points without plasticization with guest even at high temperatures and saturation levels, moderate guest-binding irreversibility and ability both for effective guest exchange and independent guest sorption. These properties constitute an advantage of the studied dendrimers as receptor materials in various applications.


Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2002

Calculation of IR spectra of the elementoorganic dendrimers

V.L. Furer; V.I. Kovalenko; A.E. Vandyukov; Jean-Pierre Majoral; Anne-Marie Caminade

Various approximations to the analysis of the dendrimer vibrational spectra are introduced. The merits and demerits of the fragment method, calculation of the first generation and linear chains containing different number of the repeated units are discussed. The experimental spectra of two series of the phosphorus-containing starburst dendrimer generations are interpreted on the basis of the calculation of the frequencies of the normal vibrations and the band intensities in their IR spectra. The analysis of spectra enables one to assign the characteristic bands for the groups in the core, in the repeating unit and the terminal groups of the dendrimers. This assignment is supported by the calculation of the absorption curves with the force constants and electro-optical parameters (EOP). The vibrational spectra of studied starburst dendrimers (SD) (up to 11 generations) are in general identical to begin with four generation. The most marked changes of band position and their intensities are seen in spectra of the first generations, when all fragments of molecule contribute appreciably to the spectral pattern. The comparative study of vibrational spectra of SD and linear polymers reveal their main characteristic features, which are determined by their structural peculiarities.


Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2008

FTIR spectroscopy and DFT studies of carbosilane dendrimers.

V.L. Furer; I.I. Vandukova; E.A. Tatarinova; A.M. Muzafarov; V.I. Kovalenko

The FTIR spectra of G(3), G(4), and G(9) generations of polybutylcarbosilane dendrimers have been recorded and analyzed. The structural optimization and normal mode analysis were performed for G(1) generation on the basis of density functional theory (DFT). This calculation gave vibrational frequencies and infrared intensities for the t,t- and g,-g-conformers of the butyl terminal groups, attached to the same silicon atom. The g,-g-conformer is 5.83 kcal/mol less stable compared to t,t-conformer. Relying on DFT calculations a complete vibrational assignment is proposed for different parts of the studied dendrimers. The dependence of band full width at half height in the IR spectra on generation number is established. The IR spectra of carbosilane dendrimers at higher temperatures at the ambient air and isolated from atmosphere air were studied. At temperature 180 degrees C all studied carbosilane dendrimers are stable when contact with atmosphere is absent, in the air they oxidize and thus CO and SiO groups appear.


Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2016

Structure, IR and Raman spectra of phosphotrihydrazide studied by DFT

V.L. Furer; A.E. Vandyukov; Jean-Pierre Majoral; Anne-Marie Caminade; V.I. Kovalenko

The FTIR and FT Raman measurements of the phosphotrihydrazide (S)P[N(Me)-NH2]3 have been performed. This compound is a zero generation dendrimer G0 with terminal amine groups. Structural optimization and normal mode analysis were obtained for G0 by the density functional theory (DFT). Optimized geometric bond length and angles obtained by DFT show good agreement with experiment. The amine terminal groups are characterized by the well-defined bands at 3321, 3238, 1614cm(-1) in the experimental IR spectrum and by bands at 3327, 3241cm(-1) in the Raman spectrum of G0. The experimental frequencies of asymmetric and symmetric NH2 stretching vibrations of amine group are lower than theoretical values due to intramolecular NH⋯S hydrogen bond. This hydrogen bond is also responsible for higher experimental infrared intensity of these bands as compared with theoretical values. Relying on DFT calculations a complete vibrational assignment is proposed for the studied dendrimer.


Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2018

Vibrational spectroscopic study of cationic phosphorus dendrimers with aminoethylpiperidine terminal groups

V.L. Furer; A.E. Vandyukov; V. Tripathi; Jean-Pierre Majoral; Anne-Marie Caminade; V.I. Kovalenko

Two generations of phosphoric dendrimers with piperidine functional groups were synthesized for use in biology and medicine. Neutral samples are soluble in organic solvents but after protonation these dendrimers become water soluble and can be used for biological experiments. The FTIR and FT Raman spectra of two generations of dendrimers Gi constructed from the cyclotriphosphazene core, repeating units OC6H4CHNN(CH3)P(S)< and aminoethylpiperidine end groups NH(CH2)2C5NH11 were recorded. The study of the IR spectra shows that the NH groups form hydrogen bonds. The calculation of the molecular structure and vibrational spectra of the first generation dendrimer was performed by the method of DFT. This molecule has flat, repeating units and a plane of symmetry passing through the core. The calculation of the distribution of potential energy made it possible to classify the bands in the experimental spectra of dendrimers. Amine groups are manifested in the form of a band of NH stretching vibrations at 3389 cm-1 in the IR spectrum of G1. NH+ stretching bands located at 2646 and 2540 cm-1 in the IR spectrum of G2. The stretching vibrations of NH+ groups are noticeably shifted to low frequencies due to the formation of a hydrogen bond with the chlorine atom. The line at 1575 cm-1 in the Raman spectrum of G1 is characteristic for repeating units.


Nature Communications | 2015

The key role of the scaffold on the efficiency of dendrimer nanodrugs

Anne-Marie Caminade; Séverine Fruchon; Cédric-Olivier Turrin; Mary Poupot; Armelle Ouali; Alexandrine Maraval; Matteo Garzoni; Marek Maly; Victor Furer; V.I. Kovalenko; Jean-Pierre Majoral; Giovanni Maria Pavan; Rémy Poupot


Vibrational Spectroscopy | 2007

Spectral additive properties of phosphorus-containing dendrimers

V.L. Furer; I.I. Vandukova; Jean-Pierre Majoral; Anne-Marie Caminade; V.I. Kovalenko


Vibrational Spectroscopy | 2007

FTIR spectroscopy studies of dendrimers built from cyclophosphazene core

V.L. Furer; I.I. Vandukova; C. Padie; Jean-Pierre Majoral; Anne-Marie Caminade; V.I. Kovalenko


Journal of Molecular Structure | 2015

DFT study of structure, IR and Raman spectra of dendrimer with PNPS linkages and its complexation with gold

V.L. Furer; A.E. Vandyukov; Jean-Pierre Majoral; Anne-Marie Caminade; S. Gottis; Régis Laurent; V.I. Kovalenko


Vibrational Spectroscopy | 2017

DFT study of structure, IR and Raman spectra of the first generation dendrimer built from cyclotriphosphazene core with terminal pyrazine groups

V.L. Furer; A.E. Vandyukov; V. Tripathi; Jean-Pierre Majoral; Anne-Marie Caminade; V.I. Kovalenko

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Anne-Marie Caminade

Centre national de la recherche scientifique

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Jean-Pierre Majoral

Centre national de la recherche scientifique

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A.E. Vandyukov

Russian Academy of Sciences

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V. Tripathi

Centre national de la recherche scientifique

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S. Gottis

Centre national de la recherche scientifique

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Clément Padié

Centre national de la recherche scientifique

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I.I. Vandyukova

Russian Academy of Sciences

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