4.7 Article

Microstructure of free volume in SMA copolymers II. Local free volume from PALS

Journal

POLYMER
Volume 46, Issue 3, Pages 869-876

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.polymer.2004.11.082

Keywords

positron annihilation; glass transition; copolymers

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The structure of the free volume and its temperature dependence between, at maximum 133 and 503 K of copolymers of styrene with maleic-anhydride, SMA (0-35 mol% MA), is studied by pressure-volume-temperature (PVT) experiments and positron annihilation lifetime spectroscopy (PALS). In this second part of the work, PALS data are reported from which the temperature dependence of the mean size and size distribution of local free volumes (subnanometer size holes) is analysed. The mean hole volume, V-h, varies in PS between 80 A 3 (133 K) and 212 A(3) (503 K) and shows a systematic decrease with increasing MA content for a given temperature above T, The specific number of holes, N-h(1), estimated from a comparison of PVT and PALS results, increases slightly with MA content from N-h(1)= (0.60 +/- 0.02) X 10(21) g(-1) to N-h(1)= (0.70 +/- 0.02) X 10(21) g(-1) which corresponds to N-h(T-g) = N-h(1)/V-g = 0.62-0.82 nm(-3) (V-g is the material's specific volume at T-g) and 1/N-h(T-g) = 1.6-1.2 nm(3) for the volume which contains one hole. The analysed size distributions of the holes above T-g follow the compressibility of the free volume as it is predicted by the theory of thermal volume fluctuation. We also comment on the connection between the hole size as measured by PALS and the size of a cluster of randomly distributed unoccupied cells as defined by the Simha-Somcynsky theory. (C) 2004 Elsevier Ltd. All rights reserved.

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