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Phase transition in poly

Coexistence of Phases and the Nature of First-Order Phase Transition in Poly-A-isopropylacrylamide Gels... [Pg.1]

K. Laszlo, K. Kosik, C. Rochas, and E. Geissler, Phase transition in poly (N-isopropylacrylamide) hydrogels induced by phenols, Macromolecules 36(20), 7771-7776 (2003). [Pg.402]

Zhao Y, Yuan GX, Roche P, Leclerc M (1995) A calorimetric study of the phase transitions in poly(3-hexylthiophene). Polymer 36 2211... [Pg.77]

Hirotsu S (1993) Coexistence of phases and the nature of l -order phase-transition in poly (A-isopropylacrylamide) gels. Adv Polym Sci 110 1-26 Hoffman AS (1981) A review of the use of radiation plus chemical and biochemical processing treatments to prepare novel biomaterials. Radiat Phys Chem 18 323 Hong Y, Krsko P, Libera M (2004) Protein surface patterning using nanoscale PEG hydrogels. Langmuir 20 11123-11126... [Pg.63]

Papkov VS, Godovsky Yu, Svistunov VS, Litvinov VM, Zhdanov AA (1984) DSC studies of phase transitions in poly([Pg.114]

Dhara, D. and Chatterji, P. R., Effect of hydrotropes on the volume phase transition in poly(N-isopropylacry-lamide) hydrogel, Langmuir, 15, 930-935 (1999). [Pg.37]

Bukalov, S.S., L.A. Leites, LA. Krylova, and M.P. Egorov. 2001. UV and Raman study of thermo-chromic phase transition in poly(di-n-hexylgermane). J Organomet Chem 636 164. [Pg.747]

Varma-Nair M, Habenschuss A, Wunderlich B (1992) Phase Transitions in Poly(4-hydroxybenzoic acid), Poly(2,6-hydrox)maphthoic acid) and their Copolymers. Proc 21 NATAS Conf in Atlanta GA, 21 343-348. [Pg.776]

Godovsky, Y. K. Papkov, V. S. Magonov, S. N., Atomic Force Microscopy Visualization of Morphology Changes Resulting from the Phase Transitions in Poly(di-n-alkoxysiloxane)s Poly(diethylsiloxane). Macromolecules 2001,34, 976-990. [Pg.54]

Friedrich, J. Raholt, J. F., Structural Studies of Phase Transitions in Poly(di-n-alkylsUoxanes). 1. Poly(dimeth)dsiloxane) and Poly(diethylsiloxane). Macro-molecides 1987,20,1975-1979. [Pg.107]

The phase transitions in poly(ether ester)s were studied by DSC. The melting temperature, T, of PBT crystals were in the range 157-225 °C and lower compared to the PBT homopolymer which melts at 230 °C. The glass transition temperature, T, of TPEEs characteristic of the amorphous phase varied between -70 and 20 °C. Both and T, as well as temperature of crystallization, T, are functions of content and increase with increasing PBT content, as is shown in Figure 10.3. [Pg.388]

Hirose, H. and Shibayama, M. (1998) Kinetics of Volume Phase Transition in Poly(N-iso-propylacrylamide-co-acrylic acid) Gels, Macromolecules, 31, 5336-42. [Pg.39]

VS3 Vshivkov, S.A. and Rusinova, E.V., Phase transitions in poly(methyl methacrylate) solutions (Russ.), Vysokomol. Soedin., Ser. A, 38, 1746, 1996. [Pg.736]

W11 Witte, P. van de, Boorsma, A., Esselburgge, H., Dijkstra, P.J., Berg, J.W.A. van den, and Feijen, J., Differential scanning calorimetry study of phase transition in poly(lactide)-chloroform-methanol systems, Macro/wo/ecw/ra, 29, 212, 1996. [Pg.736]

Boye C A and Overton J R (1974) Reversible, stress-induced, solid-phased transition in poly(tetramethylene terephthalate). Bull Am Phys Soc 19 352. [Pg.469]

Brereton M G, Davies G R, Jakeways R, Smith T and Ward 1 M (1978) Hysteresis of the stress-induced crystalline phase transition in poly(butylene terephthalate). [Pg.469]


See other pages where Phase transition in poly is mentioned: [Pg.173]    [Pg.134]    [Pg.343]    [Pg.530]    [Pg.94]    [Pg.472]   
See also in sourсe #XX -- [ Pg.568 ]




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