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  • Turkish Journal of Physics
  • Volume:43 Issue:2
  • The influence of crosslinking temperature on the spectroscopic, thermal, and mechanical properties o...

The influence of crosslinking temperature on the spectroscopic, thermal, and mechanical properties of poly(vinyl alcohol)/zeolite composites

Authors : Cenk DENKTAŞ
Pages : 196-206
View : 28 | Download : 10
Publication Date : 0000-00-00
Article Type : Research Paper
Abstract :The aim of this study was to understand the effect of crosslinking temperature on the spectroscopic, thermal, and mechanical properties of polyinsert ignore into journalissuearticles values(vinyl alcohol); insert ignore into journalissuearticles values(PVA);/zeolite composites. The PVA nanocomposite films were prepared using the solvent casting method with tartaric acid as the crosslinker. The changes in the structures of pure PVA film and powder clinoptilolite insert ignore into journalissuearticles values(CL); and nanocomposite films were analyzed by means of ATR-FTIR spectroscopy. The effect of both crosslinking temperature and CL on the composite films prepared by the addition of constant CL to the polymer matrix at different crosslinking temperatures insert ignore into journalissuearticles values(series II); and pure PVA films prepared with different crosslinking temperatures insert ignore into journalissuearticles values(series III films); shows that the tensile strengths increase with increasing crosslinking temperature, while the elongation at break of films decreases due to the crosslinking temperature and CL. The differential scanning calorimetry results show that the crosslinking temperature leads to an increase in the glass transition insert ignore into journalissuearticles values( T g ); Tg); of nanocomposites. According to the results of this study, both zeolite and crosslinking temperature affect the thermal and mechanical properties of the material. These results may be used for membrane technology.
Keywords : Poly vinyl alcohol, crosslinking temperature, differential scanning calorimetry, mechanical properties, microstructure

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