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Fan, M.Bradley, B. Vincent, C. F. J. Faul // Langmuir. – 2011. – V.27. – P.4362–4370.(59) Fan, K. The Interaction between Multi-Charge Organic Salts and Poly(vinylpyridine) MicrogelParticles/ K. Fan, M. Bradley, B. Vincent // Colloid and Polymer Science. – 2010. – V.344. – P.112–116.(60) Zakrevskyy, Y. Light-Controlled Reversible Manipulation of Microgel Particle Size UsingAzobenzene-Containing Surfactant/ Y. Zakrevskyy, M. Richter, S. Zakrevska, N.
Lomadze, R. vonKlitzing, S. Santer // Advanced Functional Materials. – 2012. – V.22. – P.5000–5009.(61) Fan, K. Photo-Responsive Properties of Poly(NIPAM-co-AAc) Microgel Particles withAbsorbed, Hydrophobically Modified Organic Salts/ K. Fan, M. Bradley, B. Vincent // Colloid andPolymer Science. – 2012. – V.368. – P.287–291.(62) Zakrevskyy, Y. Photosensitive surfactants: Micellization and interaction with DNA/ Y.Zakrevskyy, J. Roxlau, G. Brezesinski, N.
Lomadze, S. Santer // Journal of Chemical Physics. – 2014.– V.140. – P.44906.(63) Zakrevskyy, Y. Interaction of photosensitive surfactant with DNA and poly acrylic acid/ Y.Zakrevskyy, P. Cywinski, M. Cywinska, J. Paasche, N. Lomadze, O. Reich, H.-G. Löhmannsröben, S.Santer // Journal of Chemical Physics. – 2014. – V.140. – P.44907.(64) Гросберг, А. Ю. Статистическая физика макромолекул/ А. Ю. Гросберг, А. Р.
Хохлов –М.: Наука, 1989 – 344 с.(65) Flory, P. J. Principles of Polymer Chemistry/ P. J. Flory. – Cornell University Press: Ithaca,New York, 1953 – 470 p.95(66) de Gennes, P. G. Scaling Concepts in Polymer Physics/ P. J. de Gennes – Cornell UniversityPress: Ithaca, New York, 1979 – 454 p.(67) Ситникова, Н. Л. Зависимость диэлектрических свойств гелей полиметакриловойкислоты в малополярных средах от степени ионизации/ Н. Л. Ситникова, И. А. Малышкина, Н.Д. Гаврилова, О.
Е. Филиппова, А. Р. Хохлов // Вестник Московского Университета. Серия 3.Физика и Астрономия. – 1998. – V.2. – P.38–43.(68) Фролов, В. И. Динамика ионной атмосферы гелей полиметакрилата натрия в метаноле врадиочастотном диапазоне/ В. И. Фролов, Т. П. Степанова, Т. И. Борисова, О.
Е. Филиппова, А.Р. Хохлов // Высокомолекулярные Соединения. Серия А. – 2002. – V.44. – P.597–604.(69) Volkov, E. V. Dual polyelectrolyte-ionomer behavior of poly (acrylic acid) in methanol: 1. Saltfree solutions/ E. V. Volkov, O. E. Filippova, A. R. Khokhlov // Colloid Journal. – 2004. – V.66. –P.663–668.(70) Volkov, E. V. Dual polyelectrolyte-ionomer behavior of poly (acrylic acid) in methanol: 2. Saltsolutions/ E. V. Volkov, O.
E. Filippova, A. R. Khokhlov // Colloid Journal. – 2004. – V.66. – P.669–672.(71) Gunter, P. NMR Spectroscopy: Basic Principles, Concepts, and Applications in Chemistry, 2ndEdition/ P. Gunter – Wiley: Chichester, U.K., 1995 – 602 p.(72) Wu, K.-A. Pattern Selection in Polyelectrolyte Gels by Nonlinear Elasticity/ K.-A. Wu, P. J.Jha, M. Olvera de la Cruz // Macromolecules.
– 2012. – V.45. – P.6652–6657.(73) Rumyantsev, A. M. Communication: Intraparticle segregation of structurally homogeneouspolyelectrolyte microgels caused by long-range Coulomb repulsion/ A. M. Rumyantsev, A. A. Rudov,I. I. Potemkin // Journal of Chemical Physics. – 2015. – V.142. – P.171105.(74) Košovan, P.
Modeling of Polyelectrolyte Gels in Equilibrium with Salt Solutions/ P. Košovan,T. Richter, C. Holm // Macromolecules. – 2015. – V.48. – P.7698–7708.(75) Oosawa, F. Polyelectrolytes/ F. Oosawa – Dekker, New York, 1971 – 187 p.(76) Limberger, R. E. Microphase separation in solutions of associating polyelectrolytes: Strongsegregation approximation/ R.E. Limberger, I.
I. Potemkin, A. R. Khokhlov // Journal of ChemicalPhysics. – 2003. – V.119. – P.12023–12028.96(77) Rumyantsev, A. M. Polyelectrolyte Gel Swelling and Conductivity vs Counterion Type, CrossLinking Density, and Solvent Polarity/ A. M. Rumyantsev, A. Pan, S. G. Roy, P. De, E. Yu.Kramarenko // Macromolecules.
– 2016. – V.49. – P.6630–6643.(78) Raspaud, E. Precipitation of DNA by polyamines: a polyelectrolyte behavior/ E. Raspaud, M.Olvera De La Cruz, J.-L. Sikorav, F. Livolant // Biophysical Journal. – 1998. – V.74. – P.381–393.(79) Hsiao, P.-Y. Salt-Induced Collapse and Reexpansion of Highly Charged FlexiblePolyelectrolytes/ P.-Y. Hsiao, E. Luijten // Physical Review Letters. – 2006.
– V.97. – P.148301.(80) Winkler, R. G. Collapse of polyelectrolyte macromolecules by counterion condensation and ionpair formation: a molecular dynamics simulation study/ R. G. Winkler, M. Gold, P. Reineker //Physical Review Letters. – 1998. – V.80. – P.3731-3734.(81) Cherstvy, A. G. Collapse of Highly Charged Polyelectrolytes Triggered by AttractiveDipole−Dipole and Correlation-Induced Electrostatic Interactions/ A..G. Cherstvy // Journal ofPhysical Chemistry B. – 2010. – V.114. – P.5241–5249.(82) Boryu, V.
Y. A statistical theory of weakly charged polyelectrolytes: fluctuations, equation ofstate and microphase separation/ V. Y. Boryu, I. Ya. Erukhimovich // Macromolecules. – 1988. –V.21. – P.3240–3249.(83) Moncho-Jordá, A. Swelling of ionic microgel particles in the presence of excluded-volumeinteractions: a density functional approach/ A. Moncho-Jordá, J. Dzubiella // Physical ChemistryChemical Physics.
– 2016. – V.18. – P.5372–5385.(84) Qu, D. Effect of Polymer Charge and Geometrical Confinement on Ion Distribution and theStructuring in Semidilute Polyelectrolyte Solutions: Comparison between AFM and SAXS/ D. Qu, J.S. Pedersen, S. Garnier, A. Laschewsky, H. Möhwald, R. von Klitzing // Macromolecules. – 2006. –V.39. – P.7364–7371.(85) Klooster, N.
T. Solvent effects in polyelectrolyte solutions. 2. Osmotic, elastic light scattering,and conductometric measurements on (partially) neutralized poly (acrylic acid) in methanol/ N. T.Klooster, F. Van der Touw, M. Mandel // Macromolecules. – 1984.
– V.17. – P.2078–2086.(86) Tong, Z. Dual behavior of polyelectrolyte and ionomer for an ionizable polymer containingsulfonate groups in DMSO/THF mixtures/ Z. Tong, B. R. Gao // Polymer. – 2001. – V.42. – P.143–149.97(87) Colby, R. H. Polyelectrolyte conductivity/ R. H. Colby, D. C. Boris, W. E. Krause, J. S. Tan //Journal of Polymer Science Part B: Polymer Physics.
– 1997. – V.35. – P.2951–2960.(88) Bordi, F. Electrical conductivity of dilute and semidulute aqueous polyelectrolyte solutions. Ascaling theory approach/ F. Bordi, C. Cametti, A. Motta, G. Paradossi // Journal of Physical ChemistryB. – 1999. – V.103. – P.5092–5099.(89) Bordi, F. Electrical conductivity of aqueous polyelectrolyte solutions in the presence ofcounterion condensation/ Bordi, F.; Cametti, C.; Gili, T.
// Physical Review E. – 2002. – V.66. –P.021803.(90) Hyk, W. Studies of transport phenomena and electrostatic interactions in polyacrylate gels/ W.Hyk, M. Ciszkowska // Journal of Physical Chemistry B. – 1999. – V.103. – P.6466–6474.(91) Hyk, W. Diffusion of Uncharged Probe Reveals Structural Changes in Polyacids Initiated byTheir Neutralization: Poly(Acrylic Acids)/ W. Hyk, M. Masiak, Z. Stojek, M. Ciszkowska // Journal ofPhysical Chemistry B. – 2005.
– V.109. – P.4425–4430.(92) Masiak, M. Structural Changes of Polyacids Initiated by Their Neutralization with VariousAlkali Metal Hydroxides. Diffusion Studies in Poly(acrylic acid)s/ M. Masiak, W. Hyk, Z. Stojek, M.Ciszkowska // Journal of Physical Chemistry B. – 2007. – V.111.
– P.11194–11200.(93) Gong, J. P. Electrical conductance of polyelectrolyte gels/ J. P. Gong, N. Komatsu, T. Nitta, Y.Osada // Journal of Physical Chemistry B. – 1997. – V.101. – P.740–745.(94) Travas-Sejdic, J. Ion conductivity of novel polyelectrolyte gels for secondary lithium-ionpolymer batteries/ J. Travas-Sejdic, R. Steiner, J. Desilvestro, P. Pickering // Electrochimica Acta. –2001.
– V.46. – P.1461–1466.(95) Forsyth, M. Enhancement of ion dissociation in polyelectrolyte gels/ M. Forsyth, J. Sun, F.Zhou, D. MacFarlane // Electrochimica Acta. – 2003. – V.48. – P.2129–2136.(96) Ogihara, W. Ionic conductivity of polymer gels deriving from alkali metal ionic liquids andnegatively charged polyelectrolytes/ W. Ogihara, J. Sun, M. Forsyth, D. R.
MacFarlane, M.Yoshizawa, H. Ohno // Electrochimica Acta. – 2004. – V.49. – P.1797–1801.(97) Siddhanta, S. K. Conducting polymer gel: formation of a novel semi-IPN from polyaniline andcrosslinked poly(2-acrylamido-2-methyl propanesulphonicacid)/ S. K. Siddhanta, R. Gangopadhyay //Polymer. – 2005. – V.46. – P.2993–3000.98(98) Bhat, V. S. Ionic Conductivity in Binary Solvent Mixtures. 5.
Behavior of Selected 1:1Electrolytes in Ethylene Carbonate + Water at 25 °C/ V. S. Bhat, A. K. Srivastava // Journal ofChemical & Engineering Data. – 2001. – V.46. – P.1215–1221.(99) Harriss, M. G. The trifluoroacetic acid solvent system. Part I. Bases/ M. G. Harriss, J. B. Milne// Canadian Journal of Chemistry.
– 1971. – V.49. – P.1888-1894.(100) Longo, G. S. Molecular Theory of Weak Polyelectrolyte Gels: The Role of pH and SaltConcentration/ G. S. Longo, M. Olvera de la Cruz, I. Szleifer // Macromolecules. – 2011. – V.44. –P.147–158.(101) Kabanov, V. Multilayer Thin Films; Decher, G., Schlenoff, J. B., Eds./ V. Kabanov, G.
S.Longo – Wiley-VCH: Weinheim, Germany, 2003, – P.47-86.(102) Filippova, O. E. Interaction of the Low Cross-linked Gel of DiallyldimethylammoniumBromide with Sodium Dodecylsulfate/ O. E. Filippova, E. E. Makhaeva, S. G. Starodubtsev // PolymerScience. – 1992. – V.34. – P.602−606.(103) Khandurina, Y. V. Interaction of net polyelectrolytes with oppositely charged surfactants/ Y.V. Khandurina, V.














