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Molecular mobility of substituted poly(p-phenylenes) characterized by a range of polymer relaxation techniques

✍ Scribed by G. P. Simon; M. Safari Ardi; A. A. Goodwin; M. D. Zipper; S. R. Andrews; S. Shinton; G. Williams; M. Galop; M. Trimmer


Publisher
John Wiley and Sons
Year
1998
Tongue
English
Weight
295 KB
Volume
36
Category
Article
ISSN
0887-6266

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✦ Synopsis


The free volume and related mobility properties of substituted poly( p-phenylene) polymers are examined. The techniques used range from positron annihilation, dielectric relaxation, and dynamic mechanical spectroscopy to thermally stimulated currents. Fractional free volume is determined for the samples with different substituted side groups and related to the glass transition temperature. Bulkier groups lead to a greater fractional free volume and lower glass transition temperatures. Comparison of molecular relaxation times using the different characterization techniques demonstrates that there is strong coupling between motion of the main chain and the side groups, on which the dipoles reside. Intermolecular coupling between the main chains at the primary relaxation is shown in this work to be related to the nature of the side chains and resultant free volume, as are the temperature locations of local, secondary relaxations. A qualitative model describing the effect of regiochemistry on the motions and packing of these materials is also proposed.