| Literature DB >> 33800553 |
Roberto Teruel-Juanes1, Krzysztof Artur Bogdanowicz2, Jose D Badia3, Victor Sáenz de Juano-Arbona1, Robert Graf4, Jose A Reina5, Marta Giamberini2, Amparo Ribes-Greus1.
Abstract
Unoriented and oriented membranes based on dendronized polymers and copolymers obtained by chemical modification of poly[2-(aziridin-1-yl) ethanol] (PAZE) with the dendron 3,4,5-tris[4-(n-dodecan-1-yloxy)benzyloxy]benzoate were considered. DSC, XRD, CP-MAS NMR and DETA, contribute to characterize the tendency to crystallize, the molecular mobility of the benzyloxy substituent, the dendritic liquid crystalline group and the clearing transition. The orientation of the mesogenic chain somewhat hindered this molecular motion, especially in the full substituted PAZE. The fragility, free volume and thermal expansion coefficients of these membranes near the glass transition are related to the orientation and the addition of the dendritic groups. PAZE-based membranes combine both order and mobility on a supramolecular and macroscopic level, controlled by the dendritic group and the thermal orientation, and open the possibility of preparing membranes with proper channel mobility that promotes selective ionic transport.Entities:
Keywords: dendronic liquid crystal membranes; dielectric relaxation spectra; macromolecular cooperativity; poly[2-(aziridin-1-yl)ethanol] (PAZE); segmental dynamics
Year: 2021 PMID: 33800553 DOI: 10.3390/polym13071060
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329