Effect of Zeolite Fillers on the Photopolymerization Kinetics for Photocomposites and Lithography
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Xu, Yangyang
Jambou, Charles
Sun, Ke
Lalevee, J
Simon-Masseron, Angelique
Xiao, Pu
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ACS Publications
Abstract
The investigation on the preparation of thick
samples or fillers contained composites through the photopolymerization
approach is still in its infancy due to the relevant
light penetration issue and internal filter effect. Herein in this
work, we reported for the first time the fabrication of
photocomposites containing seven different kinds of zeolite
fillers under mild conditions, i.e., visible LED light irradiation at
room temperature under air. The effects of the zeolite filler
properties (i.e., morphologies, sizes, and contents) on the
photopolymerization kinetics of a photocurable resin, trimethylolpropane
triacrylate (TMPTA), were systematically investigated.
The results demonstrated that filler 1 could promote the
photopolymerization process of TMPTA, while filler 7 badly
hindered the polymerization. The filler properties affecting the light penetration and the related depth of cures were also studied
in detail. In addition, the lithography technique was applied to the photocomposites for the production of macroscopic patterns.
Optimum fillers for lithography applications can be proposed with excellent depth of cure and good spatial resolution. Finally,
the effects of photoinitiators and irradiation wavelengths on the photopolymerization processes were also investigated. This
work is expected to pave a way to a field for photopolymerization reactions in the thick and composite samples and thereby
expand potential application prospects such as 3D printing, high performance lightweight materials, and so on.
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ACS Applied Polymer Materials
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2037-12-31
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