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Interpenetrating polymer network of Poly

Davis, P. A. Nicolais, L., Ambrosio, L., and Huang, S. J., Synthesis and characterization of semi-interpenetrating polymer networks of poly(2-hydroxyethyl methacrylate) and poly(capro-lactone), Polym. Mater. Sci. Eng., 56, 536-540, 1987. [Pg.116]

Hamurcu EE, Baysal BM (1993) Interpenetrating polymer networks of poly(di-methylsiloxane) 1. Preparation and characterization. Polymer 34(24) 5163-5167... [Pg.143]

Frisch HL, Gebreyes K, Frisch KC (1988) Synthesis and characterization of semi- and full-interpenetrating polymer networks of poly(2,6-dimethyl-l,4-phenylene oxide) and polydimethylsiloxane. J Poly Sci Part A Poly Chem 26(9) 2589-2596... [Pg.145]

Frisch HLHMW (1991) Birefringence in Interpenetrating Polymer Networks of Poly(2,6-Dimethyl-l,4-Phenylene Dioxide)/Polydimethylsiloxane. J Poly Sci Part A Poly Chem 29 131-133... [Pg.145]

Zhou P, Xu Q, Frisch HL (1994) Kinetics of simultaneous interpenetrating polymer networks of poly(dimethylsiloxane-urethane)/poly(methyl methacrylate) formation and studies of their phase morphology. Macromolecules 27(4) 938-946... [Pg.145]

Huelck, V. Thomas, D.A. Sperling, L.H. Interpenetrating polymer networks of poly(ethyl acrylate) and poly(styrene-co-methyl methacrylate). I. Morphology via electron microscopy and II. Physical and mechanical behavior. Macromolecules 1972, 5 (4), 340-348. [Pg.2540]

Pandey R, Kamal M., Srivastava A.K., Interpenetrating polymer network of poly(styrene) rmd poly(citronellol-alt-methyl methacrylate). Synthesis and characterization, Polym. J., 35(2), 2003,122-126. [Pg.37]

Boonpoo-nga, R., Sriring, M., Nijpanich, S., Wongbuth, L., Martwiset, S. Semi-interpenetrating polymer networks of poly(4-styrenesulfonic acid) and poly(acrylic acid) for fuel cell applications. KKU Res. J. 16(7), 757-763 (2011)... [Pg.45]

Hamurcu, E. E. Baysal, B. M., Interpenetrating Polymer Networks of Poly(dimethylsiloxane) 1. Preparation and Characterization. Polymer 1993,... [Pg.192]

V. Huelck, D. A. Thomas and L. H. Sperling, Interpenetrating Polymer Networks of Poly(ethyl acrylate) and Poly(styrene-co-methyl methacrylate). II. Physical and Mechanical Behavior, Macromolecules 5(4), 348 (1972). PEA/PS, PEA/PMMA sequential IPNs. Mechanical behavior, Tg. [Pg.250]

Gilmer TC et al. (1996) Synthesis, characterization, and mechanical properties of PMMA/poly(aromatic/aliphatic siloxane) semi-interpenetrating polymer networks. J Poly Sci Part A Poly Chem 34(6) 1025—1037... [Pg.148]

Goswami, S., Chakrabarty, D. Synthesis and characterization of sequential interpenetrating polymer networks of novolac resin and poly(ethyl acrylate). J. Appl. Polym. Sci. 99, 2857-2867 (2006)... [Pg.45]

R. E. Touhsaent, Simultaneous Interpenetrating Polymer Networks of Epoxy and Poly(n-butyl acrylate). Morphology and Mechanical Behavior, Diss. Abstr. Int. B, 3864 (1975). 35(8). Epoxy/P(n-BA) SINs. Simultaneous gelation. Mechanical behavior. Ph.D. thesis. [Pg.259]

Chuah H H, Kyu T and Helminiak T E (1989) Scaling analysis in the phase separation of poly(j> phenylene benzobisthiazole)/Nylon-66 rigid-rod molecular composites, Polymer 30 1591-1595. Chang K Y, Chang H M and Lee Y D (1994) Molecular composites. 2. Novel block copolymer and semi-interpenetrating polymer network of rigid polyamide and flexible polyamide polyimide, J Polym Sci Part A Polym Chem 32 2629-2639. [Pg.296]

S. Kaity, J. Isaac, and A. Ghosh, Interpenetrating polymer network of locust bean gum-poly (vinyl alcohol) for controlled release drug delivery, Carbohydr. Polym., 94 (1), 456-467, 2013. [Pg.357]

Bilayer and trilayer actuators Characterizations of Electrochemical cell Experimental procedure Materials Conducting polymers (CPs) Liquid electrolyte Open air Cyclic voltammetry Dibutyltin dilaurate Electronic conducting polymers (ECPs) Interpenetrating polymer network (IPN) Poly (3,4-ethylenedioxythiophene) (PEDOT) Polypyrrole (PPY) Actuation mechanism of Electrogeneration of Electropolymerization of pyrrole monomer Oxidation and reduction reaction of Polyvinylidene fluoride (PVDF) Solid polymer electrolyte (SPE) membrane Force characterizations IPNs Load curves and metrics PVDF membrane Strain characterizations... [Pg.414]

Alan Y. Kwok Greg G. Qiao Solomon, D. H. (2004) Interpenetrating amphiphilic polymer networks of poly(2-hydroxyethyl methacrylate) and poly(ethylene oxide). Chem. Mater. 16 5650-5658. [Pg.835]

Zhou, B. X., Pu, H.T., Pan, H. Y., Wan, D.C. (2011) Proton exchange membranes based on semi-interpenetrating polymer networks of Nafion and poly(vinylidene fluoride) via... [Pg.101]

Lebrun, L., Da Silva, E., Metayer, M. (2002) Elaboration of ion-exchange membranes with semi-interpenetrating polymer networks containing poly(vinyl alcohol) as polymer matrix. Journal of Applied Polymer Science, 84, 1572-1580. [Pg.349]

Poly(ionic liquid) brushes with terminated ferrocene units acted similarly, while the interfacial resistance was probed by hexacyanoferrate [457]. Chemical and electrochemical switching of local pH at an electrode-grafted poly(vinyl pyridine) brush again allowed modulation of hexacyanoferrate chemistiy (Fig. 43) [458]. Octacyanomolybdate was used as catalyst for the oxidation of ascorbic acid [459]. Even heteropolyanions (Keggin ions) could be entrapped in polymer films electrochemicaUy [460]. Further, thermoresponsive or pH-responsive cationic copolymer films modulated the hexacyanoferrate or ferrocenedicarboxyUc acid electrochemistry by temperature or variatimi of pH and perchlorate concentration, respectively [461-463]. Besides these complexes with cationic polyelectrolyte films, electroactive cationic counterions (e.g., the europium couple) interacted with anionic networks [464]. Similarly, copper ions within a PAA matrix [367] allowed the construction of actuators [465]. Besides these binary systems (poly-electrolyte/electroactive counterions), multiresponsive electrode modification with an interpenetrating gel network of poly(acrylic) acid and poly(diethyl acrylamide) allowed the modulation of hexacyanoferrate electrochemistry [368]. [Pg.169]

Katono, H., Maruyama, A., Sanui, K., Ogata, N., Okano, T., and Sakurai, Y. Thermo-responsive swelling and drug release switching of interpenetrating polymer networks composed of poly(acrylamide-co-hutyl methacrylate) and polyfacrylic acid). J. Controlled Release 1991,16, 215-228. [Pg.173]

Lim, Y. H., Kim, D., and Lee, D. S. Drug releasing characteristics of thermo- and pH-sensitive interpenetrating polymer networks based on poly(A-isopropylacry-lamide). J. Appl. Polym. Sci. 1997, 64, 2647-2655. [Pg.173]

With controllable strength of the self- and hetero-associated hydrogen, a molecular level penetrated semi-interpenetrating polymer networks (semi-IPNs) of ST-VPDMS with poly(N-vinylpyrrolidone) (PVPr) were prepared by condensation of the self-associated silanols.13... [Pg.184]

E. Ruckenstein, L. Liang, Pervaporation of ethanol-water mixtures through poly(vinyl alcohol)-poly(acrylamide) interpenetrating polymer network membranes unsupported and supported on polyether-sulfone ultrafiltration membranes a comparison, J. Membr. Sci. 110... [Pg.57]


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See also in sourсe #XX -- [ Pg.664 ]




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