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The present findings on the evolution of polymorphism in the electrospun nanofibres of both systems provide useful information regarding their use as reinforcing elements in polymer composites.
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EDS mapping image validates the homogeneous distribution of P and Br elements in the polymer framework of TPDB (d, e).
EDS mapping image validates the homogeneous distribution of P and Br elements in the polymer framework of TPDB (Fig. 4d, e).
The coordinates of ΔHm at minimum versus solute size provide an estimate of the size of free volume elements in this polymer.
The results from present work may provide a feasible consideration of such electrospun composite fibers for use as the reinforcing elements in a polymer based composite of a new kind.
It was found that the intensity distribution of sulphur element in looser polymers (P11, P12, P15, P21, P51) was higher than tighter polymer (P10).
The paper presents selected problems relating to carrying out experimental investigations aimed at determining the tribological properties of polymer materials mating with metal or polymer elements in different friction conditions in sliding joints.
Overall, processing conditions were shown to be decisive elements in dictating activities as specific polymer compositions were characterized as having antimicrobial activities spanning over 4 orders of magnitude depending on electrospinning conditions and up to 7 orders of magnitude when compared to films of the same composition.
Thanks to the excellent physical and mechanical properties, graphene nanoflakes (GNFs) have been applied as promising reinforcing elements in various engineering materials, including polymers and ceramics.
This indicates that a kinked arrangement of the chain could be stabilized by these interactions and therefore this type of bending is possible to consider as a folding contribution element in the real polymer backbones.
The decrease in weight percentage of S element is observed by increasing the weight percentage of Th-GO, indicating a decrease in polymer weight in composites.
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