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Modulating Thermal Properties of Polymers through Crystal Engineering.


ABSTRACT: Crystal engineering has exclusively focused on the development of advanced materials based on small organic molecules. We now demonstrate how the cocrystallization of a polymer yields a material with significantly enhanced thermal stability but equivalent mechanical flexibility. Isomorphous replacement of one of the cocrystal components enables the formation of solid solutions with melting points that can be readily fine-tuned over a usefully wide temperature range. The results of this study credibly extend the scope of crystal engineering and cocrystallization from small molecules to polymers.

SUBMITTER: Germann LS 

PROVIDER: S-EPMC10947328 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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Modulating Thermal Properties of Polymers through Crystal Engineering.

Germann Luzia S LS   Carlino Elvio E   Taurino Antonietta A   Magdysyuk Oxana V OV   Voinovich Dario D   Dinnebier Robert E RE   Bučar Dejan-Krešimir DK   Hasa Dritan D  

Angewandte Chemie (International ed. in English) 20230201 19


Crystal engineering has exclusively focused on the development of advanced materials based on small organic molecules. We now demonstrate how the cocrystallization of a polymer yields a material with significantly enhanced thermal stability but equivalent mechanical flexibility. Isomorphous replacement of one of the cocrystal components enables the formation of solid solutions with melting points that can be readily fine-tuned over a usefully wide temperature range. The results of this study cre  ...[more]

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