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The mechanical strength of the molecular composite is increased with increase in the clay minerals.
As an application, we further demonstrate thermal actuation using bimorph molecular composite films.
The preliminary results suggest that the proposed approach may be practicable to prepare melt-processable molecular composite.
The molecular composite precursor melamine-urea, melamine-thiourea, and urea-thiourea were treated simultaneously under the same thermal conditions, in situ creating a novel heterojunction.
The block copolymer topology appears to be a viable alternative to the hairy-rod graft copolymer as a single-component molecular composite.
The new polymer, which represents a genuine molecular composite material with well-defined structure, has high molecular weight, good solubility in common organic solvent, and good film-forming properties.
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These molecular composites show no phase separation upon heating, indicating that they are melt-processable.
The PPTA anion was blended with a flexible-coil polymer, poly vinylpyridine) to make molecular composites.
Microporous honeycomb structured films were cast from solutions of the block copolymers to form porous molecular composites.
There are several nylon 6-clay hybrids which are molecular composites of nylon 6 and also silicate layers of saponite and montmorillonite, Nylon clay hybrids and NCHP's.
Graft copolymers of rigid-rod polymers, specially synthesized for single-component molecular composites, were investigated by wide-angle X-ray scattering.
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