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Ternary blends composed of a liquid crystalline polymer (LCP), nano-SiO2 and polysulfone (PSF) were prepared by melt blending.
Blends composed of a 1 1 weight ratio of poly DTH adipate) and PLGA and containing Integrilin™ (15%, w/w) were prepared.
Monolayers of polymer blends composed of a rodlike polymer (tetra methoxy -tetra octyloxy -phthalocyaninato-polysiloxane (PcPS) or poly(γ-benzyl-L-glutetra methoxy -tetra octyloxy -phthalocyaninato-polysiloxaneher)(PIBVE)) were stetra methoxy -tetra octyloxy -phthalocyaninato-polysiloxaneon microscopy (tetra methoxy -tetra octyloxy -phthalocyaninato-polysiloxane
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The material is a binary polymer blend composed of a poly vinylether) having azobenzene moiety in the side chain and a polycarbonate as a matrix.
Thermosetting polymer blends composed of polybenzoxazine (PBA-a) and poly ethylene oxide) (PEO) were prepared via in situ curing reaction of benzoxazine (BA-a) in the presence of PEO, which started from the initially homogeneous mixtures of BA-a and PEO.
The microstructure and ballistic impact toughness was investigated for a series of dynamically heterogeneous epoxy blends composed of diglycidyl ether of bisphenol A (DGEBA) that is cross-linked with stoichiometric mixtures of a rigid cycloaliphatic diamine and flexible polypropylene oxide based diamines.
The results suggest, however, that blends composed of two components having a network structure, for both H-bond/ionic-aggregate and H-bond/triblock-copolymer combinations, have a greater miscibility, compared with blends containing only one component capable of forming a network structure through non-covalent cross-linking.
We employed blends composed of homopolymer (PS) and an amphiphilic block copolymer polystyrene-b-poly l-glutamic acid) (polystyrene-b-poly l-glutamic
By comparing this with the data obtained by small-angle X-ray scattering and differential scanning calorimetry, the experimental results are discussed in terms of dynamical heterogeneity of miscible polymer blends composed of two polymer components with a large difference in glass transition temperatures.
Cryogenic mechanical alloying (CMA) is investigated as a viable strategy by which to produce highly dispersed blends composed of thermoplastics and tire, thereby providing a potentially new route by which to recycle discarded tires.
We report the development of a series of physical hydrogel blends composed of hyaluronan (HA) and methyl cellulose (MC) designed for independent delivery of one or more drugs, from 1 to 28 days, for ultimate application in spinal cord injury repair strategies.
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