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Formation and properties of hydrogel membranes based on cross-linked copolymers of methacrylates and water-soluble polymers

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Experimental results concerning the effect of composition, nature of polymeric matrix, monomer and solvent on the structure, physico-mechanical and selective-transport characteristics of hydrogel membranes based on cross-linked grafted copolymers of methacrylates and water-soluble polymers (polyvinyl-pyrrolidone, polyvinyl alcohol) have been presented. Methods of high-penetrating hydrogel membranes formation have been developed and capability of directional control of their structure and operational characteristics has been determined.
Rocznik
Strony
5--8
Opis fizyczny
Bibliogr. 10 poz. rys., tab.
Twórcy
autor
  • Lviv Polytechnic National University, Department of Chemical Technology of Plastics Processing, S. Bandera Str., 12, Lviv, 79013, Ukraine
autor
  • Lviv Polytechnic National University, Department of Chemical Technology of Plastics Processing, S. Bandera Str., 12, Lviv, 79013, Ukraine
  • Lviv Polytechnic National University, Department of Chemical Technology of Plastics Processing, S. Bandera Str., 12, Lviv, 79013, Ukraine
Bibliografia
  • [1] Plate N., Valuyev I. Polymers in contact of live organism. Moscow: Znaniye 1987.
  • [2] Suberlyak O., Skorokhoda V., Semenyuk N. The of structure and immobilization activity of of PVP of cross-linked copolymers. Engineering of Biomaterials 10, 63-64 (2007) 14-15.
  • [3] Suberlyak O., Skorokhoda V., Melnyk J. Hydrogel membrane on the basis co(polyvinylpyrrolidone-gr-oxyethylenemethacrylate) in the processes of dialysis. Funkcionalni Materiay 3 (1995) 354-357.
  • [4] Shvarc A, Grigorovskaya V. At the question about value of link crossing concentration. Colloid Journal 1 (1985) 30-34.
  • [5] Suberlyak O.,Tkhir I., Skorokhoda V. About mechanical properties of polyvinylpyrrolidone graft copolymers. Chimiya, Technolohiya Rechovyn i YiKh Zastosuvannia (Publishing House of Lviv Polytechnic National University) 260 (1992) 57-59.
  • [6] Dubyaga V., Perepechkin L, Katalevskiy Ye. Polymeric Membranes. Moscow: Khimiya 1981.
  • [7] Bryk M., Tsapyuk Ye. Ultrafiltration. Kyiv. Naukova Dumka 1989.
  • [8] Suberlyak O., Skorokhoda V, Melnyk J. Influence of physical and chemical effects of matrix polymerization polyvinylpyrolidone-(meth)acrylates compositions on diffusive transport descriptions of hydrogel membranes. Chimichni Nauky i Technolohiyi ("Kyiv Mohyla Akademy" Publishing House) 66 (2007) 33-38.
  • [9] Jones S., Martin G., Royall P., Brown M. Biocompatible polymer blends: effects of physical processing on the molecular interaction of poly(vinyl alcohol) and poly(vinyl pyrrolidone) J. Appl. Polym. Sci. 5, 98 (2005) 2290-2299.
  • [10] Suberlyak O., Melnyk J., Skorokhoda V. Functionally active polymeric membranes are a respectively type of membranes for the natural processes. Chimichna Promyslovist' Ukrayiny 4 (1999) 42-46.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-AGHD-0003-0020
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