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Network thermoreversible

Te Nijenhuis, K. (1997) Thermoreversible networks. Viscoelastic properties and structure of gels. Advances in Polymer Science, 130, 1-267. [Pg.112]

Muller M, Seidel U, Stadler R. Influence of hydrogen bonding on the viscoelastic properties of thermoreversible networks analysis of the local complex dynamics. Polymer 1995 36 3143-3150. [Pg.99]

Modification of macromolecular material properties by hydrogen bond formation has been demonstrated at the example of thermoreversible networks Stadler modified poly(butadiene) elastomers with urazole groups to introduce hydrogen-bonded cross-links into the system. In fact, thermoreversible cross-linking appeared due to the urazol-urazole molecular recognition, causing intermolecular cross-links [408,467]. The group of Meijer expanded the approach by the synthesis of two... [Pg.147]

Takeda M, Norisuye T, Shibayama M (2000) Critical dynamics of cross-linked polymer chains near the gelation threshold. Macromolecules 33 2909-2915 Te Nijenhuis K (1997a) Thermoreversible networks. Introduction. Adv Polym Sci 130 1-12 Te Nijenhuis K (1997b) Thermoreversible networks. Gelatin. Adv Polym Sci 130 160-193 Theiss D, Schmidt T, Dorschner H, Reichelt R, Arndt K-F (2005) Filled temperature-sensitive poly(vinyl methyl ether) hydrogels. J Appl Polym Sci 98 2253-2265 Toomey R, Freidank D, Riihe J (2004) Swelling behavior of thin, surface-attached polymer networks. Macromolecules 37 882-887... [Pg.66]


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See also in sourсe #XX -- [ Pg.3 , Pg.4 , Pg.11 , Pg.13 , Pg.21 ]




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Polybutadiene thermoreversible networks

THERMOREVERSIBLE

Thermoreversibility

Thermoreversion

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