Journal Article

·2008

Universality in gelation of epoxy acrylate with various photoinitiators: a photo differential scanning calorimetric study

Zekeriya Doğruyol YTU , Feyza Karasu YTU , Demet Karaca Balta YTU , Nergis Arsu YTU , Önder Pekcan

Phase Transitions

Abstract

Abstract Photo-differential scanning calorimetric (Photo-DSC) technique was used to study the gelation of P-3038 (epoxy acrylate (EA) 75% and tripropyleneglycoldiacrylate (TPGDA) 25%) in the presence of various thioxanthone-based initiators, namely, thioxanthone (TX), 5-thia-naphtacene-12-one (TX-NP), 2-(carboxymethoxy) thioxanthone (TX-OCH2COOH), 2-thioxanthone-thioacetic acid (TX-SCH2COOH), and 2-mercaptothioxanthone (TX-SH). Photopolymerization reactions were performed under identical conditions of temperature, initiator concentration, and UV light intensity. Photo-DSC technique allowed us to monitor the gelation, without disturbing the system mechanically, and to test the universality of the gelation as a function of some kinetic parameters like initiator concentration. During gelation, it was observed that all conversion curves present a good sigmoidal behavior by predicting to employ percolation model. Observations around the glass transition point, t g shows that the gel fraction exponents β obeyed the percolation picture. On the other hand, t g was found to be much higher for the crosslinked networks obtained with TX-OCH2COOH and TX-SCH2COOH initiators than those with the other initiators. Keywords: critical exponentphotoinitiatorepoxy acrylatephoto-DSCglass transition point

Keywords

Thioxanthone Differential scanning calorimetry Photopolymer Acrylate Polymer chemistry Glass transition Photoinitiator Universality (dynamical systems) Epoxy Chemistry Materials science Thermodynamics Monomer Composite material Polymer Physics

Subject Areas

Photopolymerization techniques and applications ·Organic Chemistry ·Physical Sciences
Photochromic and Fluorescence Chemistry ·Materials Chemistry ·Physical Sciences
Advanced Polymer Synthesis and Characterization ·Organic Chemistry ·Physical Sciences

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