Home :: Personnel :: Vasilevskaya, Valentina Vladimirovna :: List of Publications

Vasilevskaya, Valentina Vladimirovna

List of selected publications

  1. V.V. Vasilevskaya, A.R. Khokhlov
    Swelling and Collapse of Polymer Gel in Polymer Solutions and Melts.
    Macromolecules, 1992, vol. 25, p. 384.
  2. A.R. Khokhlov, S.G. Starodubtsev, V.V. Vasilevskaya
    Conformational Transitions in Polymer Gels: Theory and Experiment.
    Adv.Polym.Sci., 1993, vol. 109, p. 123.
  3. A.R. Khokhlov, P.G. Khalatur, V.V. Vasilevskaya
    Computer Simulation Analysis of Microstructure Formation in Monomer and Polymer Blends Involving Glassy Component.
    Macromol.Theory Simul., 1994, vol. 3, p. 939.
  4. V.V. Vasilevskaya, A.R. Khokhlov, Y. Matsuzawa, K. Yoshikawa
    Collapse of Single DNA Molecule in Poly(ethyleneglycol) Solutions.
    J. Chem. Phys., 1995, vol. 102, p. 6595.
  5. K. Yoshikawa, S. Kidoaki, M. Takahashi, V.V. Vasilevskaya, A.R. Khokhlov
    Marked Discretness of the Coil-Globule Transition in Single Duplex DNA.
    Ber. Bunsenges. Phys. Chem., 1996, vol. 100, p. 876.
  6. K. Yoshikawa, M. Takahashi, V.V. Vasilevskaya, A.R. Khokhlov
    Large Discrete Transition in a Single DNA Molecule Appears Continuous in the Ensemble.
    Phys. Rev. Lett., 1996, vol. 76, p. 3029.
  7. V.V. Vasilevskaya, A.R. Khokhlov, S. Kidoaki, K. Yoshikawa
    Structure of Collapsed Persistent Macromolecule: Toroid vs. Spherical Globule.
    Biopolymers, 1997, vol. 41, p. 51.
  8. M. Takahashi, K. Yoshikawa, V.V. Vasilevskaya, A.R. Khokhlov
    Discrete Coil-Globule Transition of Single Duplex DNA's Induced by Polyamines.
    J.Phys.Chem.B, 1997, vol. 101, p. 9396.
  9. V.V. Vasilevskaya, L.V. Men'shikova
    Kinetics of Polyelectrolyte Network Swelling and Collapse: Effect of Ion Association-Dissociation.
    Polym. Gels Netw., 1998, vol. 6, p. 149.
  10. V.V. Vasilevskaya, P.G. Khalatur, A.R. Khokhlov
    Conformation of a Polymer Chain Near the Solvent Critical Region. I. The Integral Equation Theory.
    J. Chem. Phys., 1998, vol. 109, p. 5108.
  11. V.V. Vasilevskaya, P.G. Khalatur, A.R. Khokhlov
    Conformation of a Polymer Chain Near the Solvent Critical Region. II. Monte Carlo Simulation.
    J. Chem. Phys., 1998, vol. 109, p. 5119.
  12. Yu.S. Velichko, V.V. Vasilevskaya, P.G. Khalatur, A.R. Khokhlov
    Association of Diphilic Chains Near the Solvent Critical Region.
    J. Chem. Phys., 1999, vol. 111, p. 2340.
  13. V.V. Vasilevskaya, I.I. Potemkin, A.R. Khokhlov
    Swelling and Collapse of Physical Gels Formed by Associating Telechelic Polyelectrolytes.
    Langmuir, 1999, vol. 15, p. 7918.
  14. I.I. Potemkin, V.V. Vasilevskaya, A.R. Khokhlov
    Associating Polyelectrolytes: Finite Size Cluster Stabilization versus Physical Gel Formation.
    J. Chem. Phys., 1999, vol. 111, p. 2809.
  15. V.V. Vasilevskaya, A.R. Khokhlov, K. Yoshikawa
    Single Polyelectrolyte Macromolecule in the Salt Solution: Effect of Escaped Counter Ions.
    Macromol. Theory Simul., 2000, vol. 9, p. 600.
  16. V.A. Ivanov, M.R. Stukan, V.V. Vasilevskaya, W. Paul, K. Binder
    Structures of Stiff Macromolecules of Finite Chain Length near the Coil-Globule Transition: A Monte Carlo Simulation.
    Macromol. Theory Simul., 2000, vol. 9, p. 488.
  17. G. Bokias, V.V.Vasilevskaya, I.Iliopoulos, D.Hourdet, A.R.Khokhlov
    The Influence of the Migration of the Ionic Groups on the Solubility of Polyelectrolytes: Phase Behavior of Ionic Poly(N-isopropylacrylamide) Copolymers in Water.
    Macromolecules, 2000, vol. 33, p. 9757.
  18. V.V.Vasilevskaya
    Conformational Transitions in Polyelectrolyte Molecules: Influence of Osmotic Pressure of Counter Ions. In: Physical Chemistry of Polyelectrolytes. Marcel Dekker, N.Y., v.1, Chapter 6, 2000, pp. 181-201.
  19. V.V. Vasilevskaya, L.A. Gusev, A.R. Khokhlov, O. Ikkala, G. ten Brinke
    Domains in Melts of Comb-Coil Diblock Copolymers: Superstrong Segregation Regime.
    Macromolecules, 2001, vol. 34, p. 5019.
  20. V.V. Vasilevskaya, A.A. Klochkov, P.G. Khalatur, A.R. Khokhlov, G. ten Brinke
    Microphase separation within a Comb Copolymer with Attractive Side Chains: A Computer Simulation Study.
    Macromol. Theory Simul., 2001, vol. 10, p. 389.
  21. V.V. Vasilevskaya, A.R. Khokhlov
    Swelling and Collapse of Swiss-Cheese Polyelectrolyte Gels in Salt Solutions.
    Macromol.Theory Simul., 2002, vol. 11, p. 615.
  22. L.V. Gusev, V.V. Vasilevskaya, V.Yu. Makeev, P.G. Khalatur, A.R. Khokhlov
    Segmentation of Heteropolymer Sequences Specifying Subsequences with Different Composition and Statistical Properties.
    Macromol. Theory Simul., 2003, vol. 12, p. 604.
  23. V.V. Vasilevskaya, P.G. Khalatur, A.R. Khokhlov
    Conformational Polymorphism of Amphiphilic Polymers in a Poor Solvent.
    Macromolecules, 2003, vol. 36, p. 10103.
  24. V.V. Vasilevskaya, A.A. Aerov, A.R. Khokhlov
    "Swiss-Cheese" Polyelectrolyte Gels as Media with Extremely Inhomogeneous Distribution of Charged Species.
    J. Chem. Phys., 2004, vol. 120, p. 9321.
  25. V.V. Vasilevskaya, A.A. Klochkov, A.A. Lazutin, P.G. Khalatur, A.R. Khokhlov
    HA (Hydrophobic/Amphiphilic) Copolymer Model: Coil-Globule Transition versus Aggregation.
    Macromolecules, 2004, vol. 37, p. 5444.
  26. V.V. Vasilevskaya, A.A. Aerov, A.R. Khokhlov
    Catalytic Reactions of a Surface-Active Catalyst and a Surface-Active Substrate in Emulsions: The Optimal Drop Size.
    Doklady Physical Chemistry, 2004, vol. 398, p. 258.
  27. V.V. Vasilevskaya, L.V. Gusev, A.R. Khokhlov
    Protein sequences as a "literary" text.
    Doklady Biochemistry and Biophysics, 2004, vol. 397, p. 235.
  28. V.V. Vasilevskaya, A.A. Aerov, A.R. Khokhlov
    Control of Reactions Between Surfactant Reagents in Miniemulsions. Surface Nanoreactors.
    Colloid Polym. Sci., 2006, vol. 284, p. 459.
  29. V.V. Vasilevskaya, V.A. Markov, P.G. Khalatur, A.R. Khokhlov
    Semiflexible Amphiphilic Polymers: Cylindrical-Shaped, Collagenlike, and Toroidal Structures.
    J. Chem. Phys., 2006, vol. 124, p. 144914.
  30. V.V. Vasilevskaya, L.V. Gusev, A.R. Khokhlov
    Protein Sequences as Literature Text.
    Macromol. Theory Simul., 2006, vol. 15, p. 425.
  31. A.Sh. Ziyatdinov, L.V. Gusev, V.V. Vasilevskaya, A.R. Khokhlov
    Analysis of correlations in location of hydrophobic and hydrophilic monomers in protein sequences.
    Doklady Biochemistry and Biophysics, 2006, vol. 411, p. 361.
  32. V.A. Markov, V.V. Vasilevskaya, P.G. Khalatur, G. ten Brinke, A.R. Khokhlov
    Diagram of State of Stiff Amphiphilic Macromolecules.
    Macromol. Symp., 2007, vol. 252, p. 24.
  33. V.V. Vasilevskaya, L. Leclercq, V. Boustta, V. Vert, A.R. Khokhlov
    Study of Interpolymer Complexes of Oppositely Charged Macromolecules with Different Affinity to Solvent.
    Macromolecules, 2007, vol. 40, p. 5934.
  34. V.A. Ermilov, V.V. Vasilevskaya, A.R. Khokhlov
    Secondary Globular Structure of Copolymers Containing Amphiphilic and Hydrophilic Units: Computer Simulation Analysis.
    Polymer Sci. A, 2007, vol. 49, p. 89.
  35. E.V. Petrovskaya, V.V. Vasilevskaya, A.R. Khokhlov
    Helix-Coil Transition in DNA in the Presence of a Denaturating Agent.
    Moscow University Physics Bulletin, 2007, vol. 62, p. 99.
  36. P.N. Ablyazov, V.V. Vasilevskaya, A.R. Khokhlov
    Reactions in Surface Microreactors: Computer Simulation.
    Colloid Journal, 2007, vol. 69, p. 265.
  37. E.V. Petrovskaya, V.V. Vasilevskaya, A.R. Khokhlov
    Catalytic reactions in emulsions in the presence of a polymeric catalyst.
    Polymer Sci. A, 2007, vol. 49, p. 729.
  38. A.A. Starostina, A.A. Klochkov, V.V. Vasilevskaya, A.R. Khokhlov
    Amphiphilic Comb Macromolecules With Different Distribution Statistics of Side-Chain Grafting Sites: Mathematical Modeling.
    Polymer Science - Series A, 2008, vol. 50, p. 1008.
  39. V.V. Vasilevskaya, V.A. Markov, G. ten Brinke, A.R. Khokhlov
    Self-Organization in Solutions of Stiff-Chain Amphiphilic.
    Macromolecules, 2008, vol. 41, p. 7722.
  40. V.A. Markov, V.V. Vasilevskaya, P.G. Khalatur, G. Ten Brinke, A.R. Khokhlov
    Conformational Properties of Rigid-chain Amphiphilic Macromolecules: The phase Diagram.
    Polymer Science - Series A, 2008, vol. 50, p. 621.
  41. S.G.Starodubtsev, V.V.Vasilevskaya, A.R.Khokhlov
    Conformational transitions in cross-linked ionic gels: theoretical background, recent developments, and applications. In: Smart Polymers: Applications in biotechnology and Biomedicine, Second Edition, Ed. I.Galaev, Bo Mattiasson, CPC Press, Taylor&Frances Group Boca Raton, London, NY, 2008, Ch.3, pp.82-114.
  42. P.N. Ablyazov, V.V. Vasilevskaya, A.R. Khokhlov
    Destruction of globules of Co- and homopolymer macromolecules in the presence of an amphiphilic substrate.
    Polymer Science - Series A, 2009, vol. 51, p. 424.
  43. M.K. Krotova, V.V. Vasilevskaya, L. Leclercq, M. Boustta, M. Vert, A.R. Khokhlov
    Salt Effects on Complexes of Oppositely Charged Macromolecules Having Different Affinity to Water.
    Macromolecules, 2009, vol. 42, p. 7495.
  44. M.K. Krotova, V.V. Vasilevskaya, A.R. Khokhlov
    The effect of a low-molecular-mass salt on stoichiometric polyelectrolyte complexes composed of oppositely charged macromolecules with different solvent affinities.
    Polymer Science - Series A, 2009, vol. 51, p. 1075.
  45. I.M. Okhapkin, V.I. Lozinsky, V.V. Vasilevskaya, A.R. Khokhlov
    Surface nanoreactors for efficient catalysis of hydrolytic reactions. In: Nanoreactor Engineering for Life Sciences and Medicine, eds. A.Ostafin, K. Landfester, Artech house, 2009, pp.187-208.
  46. M.K. Krotova, V.V. Vasilevskaya, N. Makita, K. Yoshikawa, A.R. Khokhlov
    DNA Compaction in a Crowded Environment with Negatively Charged Proteins.
    Physical review letters, 2010, vol. 105, p. 128302.
  47. M.K. Glagolev, V.V. Vasilevskaya, A.R. Khokhlov
    Compactization of Rigid-Chain Amphiphilic Macromolecules with Local Helical Structure.
    Polymer science series A, 2010, vol. 52, p. 761.
  48. V.A. Ermilov, V.V. Vasilevskaya, A.R. Khokhlov
    Secondary Structure of Globules of Copolymers Consisting of Amphiphilic and Hydrophilic Units: Effect of Potential Range.
    Polymer science series A, 2010, vol. 52, p. 317.
  49. A.A. Glagoleva, V.V. Vasilevskaya, A.R. Khokhlov
    Microphase Separation in the Melts of Diblock Copolymers Composed of Linear and Amphiphilic Blocks.
    Polymer science series A, 2010, vol. 52, p. 182.
  50. A.A. Glagoleva, V.V. Vasilevskaya, A.R. Khokhlov
    Adsorption of Amphiphilic Comb-Shaped Macromolecules on a Patterned Surface.
    Polymer science series A, 2011, vol. 53, p. 344.
  51. M.K. Glagolev, V.V. Vasilevskaya, A.R. Khokhlov
    Formation of Fibrillar Aggregates in Concentrated Solutions of Rigid-Chain Amphiphilic Macromolecules With Fixed Torsion and Bend Angles.
    Polymer science series A, 2011, vol. 53, p. 733.
  52. V.V. Vasilevskaya, V.A. Ermilov
    Computer simulation of macromolecular systems with amphiphilic monomer units: biomimetic models.
    Polymer Sci. A, 2011, vol. 53, p. 846.
  53. A.A. Lazutin, A.N. Semenov, V.V. Vasilevskaya
    Polyelectrolyte complexes consisting of macromolecules with varied stiffness: computer simulation.
    Macromolecular Theory and Simulations, 2012, vol. 21, p. 328.
  54. M.K. Krotova, V.V. Vasilevskaya, A.R. Khokhlov
    Compaction of DNA in solutions of highly charged proteins carrying the same charge as DNA.
    Polymer Sci. C, 2012, vol. 54, p. 21.
  55. M.K. Glagolev, V.V. Vasilevskaya, A.R. Khokhlov
    Self-assembly of polymer layers with mobile grafting points: computer simulation.
    Polymer Sci. A, 2012, vol. 54, p. 767.
  56. M.K. Glagolev, V.V. Vasilevskaya, A.R. Khokhlov
    Self-organization of amphiphilic macromolecules with local helix structure in concentrated solutions.
    J.Chem.Phys., 2012, vol. 137, p. 084901.
  57. A. Glagoleva, I. Erukhimovich, V. Vasilevskaya
    Voids' microstructuring in lamellar phase of amphiphilic macromolecules.
    Macromolecular Theory and Simulations, 2013, vol. 22, p. 35.
  58. A.A. Glagoleva, V.V. Vasilevskaya, K.Yoshikawa, A.R. Khokhlov
    Self-assembly of an amphiphilic macromolecule under spherical confinement: an efficient route to generate hollow nanospheres.
    J.Chem.Phys., 2013, vol. 139

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