The use of polymers in microelectronics and photonics is continuously developing along two main streams: the preparation of polymer structures spanning from nano- to meso-scale and the improvement of semiconducting/conducting functions into the macromolecule thus making their electronic and optical properties suitable to specific goals (charge...
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2012 (v1)PublicationUploaded on: April 14, 2023
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2015 (v1)Publication
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2017 (v1)Publication
Crystallization of polymorphic polymers can lead to different structures, starting from the same melt or solution. Comprehensive understanding of crystallization modalities in such systems is of primary technological and scientific relevance, because it can enable prediction - and possible control - of the polymorphic composition of a material...
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2016 (v1)Publication
The thermal fractionation kinetics of a linear low-density polyethylene (LLDPE) during Successive Self-Nucleation and Annealing (SSA) is investigated by fast scanning chip-calorimetry (FSC), by systematically varying the holding times (ts) at each fractionation temperature (Ts). The range of explored fractionation times spans four orders of...
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2013 (v1)Publication
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2016 (v1)Publication
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2016 (v1)Publication
The crystallization of polymers from the amorphous melt is a challenging field in which the material is subjected to changes in a combination of rapidly varying parameters in order to induce solidification with a controlled degree of crystallinity as well as maintain control over the macroscopic shape as well as semi-crystalline structure and...
Uploaded on: March 27, 2023 -
2012 (v1)Publication
The effect of counit type on the kinetics of mesophase formation has been investigated by means of chip-calorimetry in propene/α-olefin random copolymers, containing counits which show large differences in their co-crystallization behavior with propene, i.e. 1-butene and 1-hexene. Non-isothermal crystallization experiments indicated that the...
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2014 (v1)Publication
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Uploaded on: April 14, 2023