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Differential scanning calorimetric studies on the glass transition temperature of polyhydroxystyrene derivatives containing sorbed water
Authors:K Nakamura  T Hatakeyama  H Hatakeyama
Affiliation:Industrial Research Institute of Kanagawa Prefecture, Showamachi, Kanazawa-ku, Yokohama, Japan;Research Institute for Polymers and Textiles, Ministry of International Trade and Industry, Yatabe-cho, Tsukuba-gun, Ibaraki, Japan;Industrial Products Research Institute, Ministry of International Trade and Industry, Yatabe-cho, Tsukuba-gun, Ibaraki, Japan
Abstract:Poly(4-acetoxystyrene) (PAS) and poly(4-acetoxy-3-methoxystyrene) (PAMS), poly(4-hydroxystyrene) (PHS) and poly(4-hydroxy-3-methoxystyrene) (PHMS) have been prepared. The effects of hydrogen bonding on the glass transition temperatures (Tg) of these polymers have been studied by differential scanning calorimetry. The Tg′s of partially hydrolyzed PAS and PAMS increased with the degree of hydrolysis. Partially hydrolyzed PAS and PAMS are estimated to be random copolymers, judging from the correspondence between the calculated and observed Tg′s of these polymers. The effect of water on the glass transition was also studied, and it was clarified how water adsorbed on the polymers acts as a hydrogen-bond breaker. The ‘critical water content’ is calculated from the decrease of Tg by water absorption, and the relation between hydrogen bonding and Tg is discussed.
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