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Temperature-responsive hydrogels

From this perspective, temperature-responsive hydrogels are reviewed as agents in the design of effective polymeric structures for thermo-responsiveness as Intelligent Materials . [Pg.181]

Table 16.1 Polymers used for fabricating temperature-responsive hydrogels... Table 16.1 Polymers used for fabricating temperature-responsive hydrogels...
Kaneko, Y. Sakai, K. Okano, T. Temperature-responsive hydrogels as intelligent materials. In Biorelated Polymers and Gels Okano, T., Ed. Academic Press Boston, 1998 29-70. [Pg.1778]

Kuckling D, Harmon M, Frank CW (2002a) Photo cross-linkable PNIPAAm copolymers 1 synthesis and characterization of constrained temperature-responsive hydrogel layers. Macromolecules 35 6377-6383... [Pg.63]

Kuckling D, Hoffman J, Plotner M, Ferse D, Kretschmer K, Adler HJP, Arndt KF, Reichelt R (2003b) Photo cross-linkable PNIPAAm copolymers 3 microfabricated temperature responsive hydrogels. Polymer 44 4455 462... [Pg.63]

Guenther M, Gerlach G, Gotten C, Kuckling D, Muller M, Shi Z, Sorber J, Arndt K-F (2007c) Application of polyelectrolytic temperature-responsive hydrogels in chemical sensors. Macro-mol Symp 254 314-321... [Pg.194]

Kobayashi J, Kikuchi A, Sakai K, Okano T. Aqueous chromatography utilizing hydrophobicity-modified anionic temperature-responsive hydrogel for stationary phase. J Chromatogr A 2002 958 109—119. [Pg.315]

Huang, J. Cusick, B. Pietrasik, J. Wang, L. Kowalewski, T. Lin, Q. Matyjaszewski, K. Synthesis and in situ atomic force microscopy characterization of temperature-responsive hydrogels based on poly(2-(dimethylamino)ethyl methacrylate) prepared by atom transfer radical polymerization. Langmuir 2007, 23 (1), 241-249. [Pg.1301]

Temperature-responsive hydrogels, mostly based on PNlPAAm and its derivatives, are widely studied and used for a variety of applications, including drug delivery and tissue engineering. If the temperature of the environment is raised to a critical value known as lower critical solution temperature (LCST), these networks tend to shrink or collapse and the systems undergo a reversible... [Pg.82]

Buensow, J. Enzenberg, A. Pohl, K. Schuhmann, W Johannsmann, D. Electrochemi-cally induced formation of surface-attached temperature-responsive hydrogels. Amper-ometric glucose sensors with tunable sensor characteristics. Electroanalysis 2010, 22, 978-984. [Pg.415]

Gorga RE, Cohen RE (2004) Toughness enhancements in poly (methyl methacrylate) by addition of oriented multiwall carbon nanotube. J Polym Sci B Polym Phys 42(14) 2690-2702 Gorgieva S, Kokol V (2011) Synthesis and application of new temperature responsive hydrogels based on carboxymethyl and hydroxyethyl cellulose derivatives for the functional finishing of cotton knitwear. Carbohydr Polym 85 664-673... [Pg.290]

Temperature-responsive smart hydrogels change their structural properties in response to the temperature of their environment (Fig. 8.1). They comprise the most commonly studied responsive systems having great potential for various biomedical applications. Temperature-responsive hydrogels can be classified as negatively thermosensitive lower critical solution temperature (LCST) and positively thermosensitive upper critical solution temperature (UCST) polymers (Ishida et al, 2012 Qiu and Park, 2001). [Pg.238]

Ishida, K., Uno,T., Itoh,T. and Kubo, M. (2012). Synthesis and property of temperature-responsive hydrogel with movable cross-linking points. Macromolecules, 45,6136-6142. [Pg.267]

Y. Kaneko, K. Sakai, and T. Okano, Temperature-responsive hydrogels as intelligent materials, in Biorelated Polymers and Gels, T. Okano, Ed., pp. 29—69, chapter 2, Academic Press, Boston, Mass, USA, 1998. [Pg.293]


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See also in sourсe #XX -- [ Pg.82 ]




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