Issue 2, 2013

Synthesis and photopolymerization kinetics of benzophenonesesamol one-component photoinitiator

Abstract

A benzodioxole derivative, 4-(2-(benzodioxol-5-yloxy)ethoxy)benzophenone (BPC2BDO), based on 4-hydroxybenzophenone and sesamol was synthesized, and used as a one-component Type II photoinitiator. The structure of BPC2BDO was characterized by elementary analysis, APCI-MS, 1H NMR, and 13C NMR. The rate of decomposition (Rd) of BPC2BDO in acetonitrile was studied by UV-Vis spectroscopy and found that Rd was proportional to light intensity. Real-time near-IR was used to study the kinetics of photopolymerization of the photoinitiator. As the benzophenone (BP) moiety and hydrogen donor were introduced into one molecule in BPC2BDO, radicals could be generated through intra-molecular reaction due to the close vicinity of the hydrogen donor and BP, which might be faster than inter-molecular reaction. The results also showed that the rate of polymerization of acrylates was significantly higher than that of methacrylates at the same polymerization conditions; the functionality of acrylates, concentration of BPC2BDO, and light intensity affected the polymerization rate and the final conversion.

Graphical abstract: Synthesis and photopolymerization kinetics of benzophenone sesamol one-component photoinitiator

Article information

Article type
Paper
Submitted
02 Jul 2012
Accepted
19 Sep 2012
First published
09 Oct 2012

Photochem. Photobiol. Sci., 2013,12, 323-329

Synthesis and photopolymerization kinetics of benzophenone sesamol one-component photoinitiator

J. Yang, S. Shi, F. Xu and J. Nie, Photochem. Photobiol. Sci., 2013, 12, 323 DOI: 10.1039/C2PP25241D

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