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Viscoelastic and Transport Properties of Sulfonated PS-PIB-PS Block Copolymers

Authors: Eugene Napadensky; Dawn Crawford; James Sloan; Nora B. Tan; ARMY RESEARCH LAB ABERDEEN PROVING GROUND MD
 
Abstract: Morphology, viscoelastic, and transport properties of the sulfonated polystyrene-polyisobutylene-polystyrene (PS-PIB-PS) block copolymer were investigated with respect to sulfonation level and counter-ion substitution. Dynamic mechanical analysis (DMA) was used to examine the dynamic storage modulus E' and dynamic loss modulus E", as they relate to changes in sulfonation levels. Small-angle x-ray scattering (SAXS) results confirmed that at a certain percent of sulfonation, a phase transition occurs from hexagonally packed cylinders to lamellar structure due to swelling of the styrene domains caused by the higher sulfonation levels. Transport measurements using Fourier Transfer Infrared Spectrometer (FTIR) confirm that the sulfonation level directly dictates the transport rate of small molecules (alcohol and water) through the PS-PIB-PS triblock copolymer membrane. Faster water transport can be achieved by incorporating more sulfonic acid groups throughout the polymer backbone. In addition, infrared (IR) data clearly identifies molecular interactions between the solvating alcohol molecules and the PS-PIB-PS triblock copolymer. The observed properties suggest that these ion-containing block copolymers are worthy of further development as barrier membranes to be incorporated into chemical protective clothing.

Limitations: APPROVED FOR PUBLIC RELEASE
Description: Final rept. Oct 1999-Oct 2000
Pages: 42
Report Date: MAY 2001
Report Number: A510293
Keywords relating to this report:
*BLOCK COPOLYMERS
*Polystyrene
*PROTECTIVE CLOTHING
*TRANSPORT PROPERTIES
*VISCOELASTICITY
ALCOHOLS
BUTENES
DIFFUSION
FOURIER SPECTROMETERS
INFRARED RADIATION
IONOMERS
MOLECULE MOLECULE INTERACTIONS
MORPHOLOGY
PHASE TRANSFORMATIONS
SUBSTITUTION REACTIONS
SULFONIC ACIDS
WATER
X RAY SCATTERING
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