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Both binary and ternary blends (consisting of a preblend of EPR and a functionalised modifier) were examined.
Blends consisting of a systematic compositional series of starch/poly ethylene-co-vinyl alcohol) were starch/poly ethylene-co-vinylstarch/poly ethylene-co-vinyl
A series of polyethylene (PE) blends consisting of a linear high density polyethylene (HDPE) and a linear low density polyethylene (LLDPE) with an octane-chain branch density of 120/1000 carbon was prepared at different concentrations.
In a first step gradient porous surfaces were created from polymeric blends consisting of a linear polystyrene as major component and amphiphilic copolymers of poly styrene-co-acrylic acid) as minor compoly styrene-co-acrylic
The influence of morphology on micromechanical deformation behaviour of blends consisting of a lamellar forming styrene/butadiene star block copolymer and polystyrene homopolymer (hPS) was studied by transmission electron microscopy (TEM).
Here, we report on a simple and versatile method of in situ polymerization of macrocyclic carbonates in the presence of a maleic anhydride polypropylene (mPP) matrix and a surface-active compatibilizer (i.e. PC grafted onto a mPP backbone generated in situ) to yield a micro- and nanostructured polymer blends consisting of a polycarbonate (PC) minor phase, and a polypropylene (PP) major phase.
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This study examined the microdomain structures and the crystallization behavior in binary blends consisting of an asymmetric block copolymer and a homopolymer using small-angle X-ray scattering, optical microscopy and differential scanning calorimetry.
SMA/PEMI 80/20 blends consisted of a continuous SMA phase and PEMI droplets with a diameter of less than 1 μm.
The complex melting endotherm of the blends consisted of a broad low temperature peak at Tm1, a high temperature peak at Tm2, and an intermediate peak at T′m which was not characteristic of either constituent and depended on blend composition.
Pressure dependence of various phase transitions for the miscible block copolymer (BCP) blends was evaluated by depolarized light scattering (DPLS) and small-angle neutron scattering (SANS) measurements, in which the blends consist of a polystyrene-b-poly n-butyl methacrylate) (polystyrene-b-poly n-butyled polystyrene-b-poly n-butyl methacrylate) (dpolystyrene-b-poly n-butyl
Aqueous solutions of a blend consisting of a PEO PPO PEO triblock copolymer, Pluronic F127 (EO100–PO65–EO100) and a PPO PEO PPO triblock copolymer, Pluronic-R 25R4 (PO19–EO33–PO19) were studied.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com