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Titlebook: Colloidal and Morphological Behavior of Block and Graft Copolymers; Proceedings of an Am Gunther E. Molau Conference proceedings 1971 Plenu

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https://doi.org/10.1007/978-3-322-95490-9of the rubber(3) while antioxidant content and mixing time control the rubber dispersion of blends(4). Predominance of the graft process(8) in current production of impact polystyrene results from more efficient use of rubber in producing toughness.
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https://doi.org/10.1007/978-3-7091-6924-7eparation in mixtures of random copolymers with one of the corresponding homopolymers. Both the amount and the molecular weight of added homopolymer have a larger effect on the conditions for phase separation in random-copolymer-homopolymer mixtures than they have on the conditions for microphase separation in block copolymer-homopolymer mixtures.
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https://doi.org/10.1007/978-3-658-13435-8 because the adsorption behavior of S and MMA homopolymers has been studied, both as individual polymers and as mixtures (2). Since the S/MMA block copolymer synthesis procedure consistently yielded a mixture of S and MMA homopolymer plus S/MMA block copolymer, all measurements thus far have been confined to such mixtures.
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Vom Andenpakt zur Andengemeinschaftamorphous polybutadiene regions. Furthermore, Hendus, et al., showed that the size of the polystyrene domains and the morphology of the films is dependent on composition and molecular weight of the copolymer. Also, the domains of the polymers were found to be altered by the solvent from which the copolymer films were cast(6).
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https://doi.org/10.1007/978-3-658-08608-4, consisting of polyethylene modified by the inclusion of phosphonic acid side groups has been recently studied. and apparently exhibits microphase separation at high phosphonic acid contents even without ionization. In this case the dispersed phase consists of hydrogen bonded aggregates of phosphonic acid groups.
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