Liquid Crystalline Polymers. 15. Synthesis and Thermal Behavior of Some Aromatic Polyethers Containing Different Spacers

Author:

Alazaroaie Silvia,Catanescu Carmen Otilia1,Pavel Dumitru2,Scutaru Dan,Romanic Mihaela3,Toader Violeta,Simionescu Cristofor I.4,Hurduc Nicolae4

Affiliation:

1. “Petru Poni” Institute of Macromolecular Chemistry, Aleea Gr. Ghica Voda 41 A, 700487 Iasi, Romania

2. Department of Applied Chemistry, RMIT University, GPO box 2476 V, Melbourne, Vic. 3001, Australia

3. Technical University Iasi, Faculty of Chemical Engineering, Department of Organic Chemistry, Bd. Mangeron 71, 700050 Iasi, Romania

4. Technical University Iasi, Faculty of Chemical Engineering, Department of Macromolecules, Bd. Mangeron 71, 700050 Iasi, Romania

Abstract

A series of aromatic homo- and copolyethers containing 6, 7 or 8 methylenic groups as spacers are presented. The polymers were synthesized by phase-transfer catalysis and they were characterized by using 1H-NMR, polarized light microscopy, differential scanning calorimetry and thermogravimetric analyses. All copolymers have low molecular weight, situated within the oligomer domain. They have high transition temperatures except for the case when bent or semi-flexible bisphenols were used as comonomers. Only 4,4 -dihydroxyazobenzene-based polymers showed liquid crystalline properties with a mesophase range over 50° C, and with the clearing temperatures situated near their thermal decomposition limit. The insertion of kink or flexible bisphenols was not favorable to mesophase formation (it induced too high a disorder in the system), but it lowered the transition temperatures, as expected. Few exceptions occurred in the case of bisphenol A and 4,4 -dihydroxybenzophenone. The biphasic nature of these copolyethers is most probably due to both the polydispersity and the chemical heterogeneity of the samples. Some of the semi-crystalline copolymers may exhibit virtual mesophase that can be uncovered by increasing their molecular weight or by raising the free energy of the isotropic liquid state.

Publisher

SAGE Publications

Subject

Materials Chemistry,Organic Chemistry,Polymers and Plastics

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