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Improvement of Mechanical Properties of Anisotropic Glassy Polystyrene by Introducing Heat-Labile Reversible Bonds

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Carboxylic acid groups were introduced into polystyrene, and the effect both on melt rheology and on mechanical properties of stretched and quenched anisotropic solids below the glass-transition temperature (Tg) was… Click to show full abstract

Carboxylic acid groups were introduced into polystyrene, and the effect both on melt rheology and on mechanical properties of stretched and quenched anisotropic solids below the glass-transition temperature (Tg) was investigated. First, the facile preparation of well-defined copolymers of styrene (S) and 4-vinylbenzoic acid (A) by reversible addition–fragmentation chain-transfer polymerization was demonstrated. The evaluation of monomer reactivity ratios shows that the acid polymerizes faster than styrene but shows that block formation is suppressed under the applied conditions. Addition of acid groups leads to an increase in Tg, and this is documented by the detection of acid dimers in the glassy polymers. Importantly, linear viscoelastic measurements confirm that all the tested samples have a similar number of entanglements per chain (Z), which suggests that the acid groups do not form hydrogen bonds at temperatures above Tg. These are further confirmed by nonlinear extensional rheology of the samples i...

Keywords: properties anisotropic; rheology; acid groups; mechanical properties; improvement mechanical

Journal Title: Macromolecules
Year Published: 2019

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