| Literature DB >> 28788474 |
Alessandra Vitale1, Marco Sangermano2, Roberta Bongiovanni3, Peter Burtscher4, Norbert Moszner5.
Abstract
A cationic photo-curable cycloaliphatic epoxy resin has been investigated as reactive monomer in blue light crosslinking process. We have demonstrated that camphorquinone is able to abstract labile hydrogen from the epoxy monomer, giving rise to the formation of carbon-centered radicals that are oxidized by the onium salt; a complete epoxy group conversion was reached after 50 s of irradiation. The presence of water up to 1 wt% was tolerated without any important detrimental effect on the kinetics of light-curing. The presence of the inorganic filler up to 65 wt% did not significantly influence the curing process.Entities:
Keywords: cationic photopolymerization; epoxy monomer; visible light curing
Year: 2014 PMID: 28788474 PMCID: PMC5453123 DOI: 10.3390/ma7010554
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Scheme 1.Schematic process of cationic photopolymerization of an epoxy monomer in the presence of a generic triphenyl sulfonium salt.
Scheme 2.Mechanism of radical induced cationic polymerization.
Figure 1.Chemical structures of the monomer and photoinitiators.
Relative mixture compositions (wt%) for cationic systems.
| Component | Formulation NH | Formulation A | Formulation B | Formulation C |
|---|---|---|---|---|
| UV30 | 0.96 | 0.96 | 0.96 | 0.96 |
| Rhodorsil | 0.031 | 0.036 | 0.030 | 0.020 |
| CQ | 0.003 | 0.004 | 0.010 | 0.020 |
| EMBO | 0.006 | – | – | – |
| Rhodorsil : CQ (wt%) | 10:1 | 9:1 | 3:1 | 1:1 |
Figure 2.RT FT-IR conversion curves as a function of irradiation time for the epoxy based formulation containing different photoinitiator systems.
Figure 3.RT FT-IR conversion curves as a function of irradiation time for the epoxy based System C in presence of increasing amount of water.
Figure 4.RT FT-IR conversion curves as a function of irradiation time for filled epoxy formulations.