2022
DOI: 10.1016/j.eurpolymj.2021.110987
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Ternary hybrid materials based on the photoinduced cationic polymerization of functional twin monomer and epoxides

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Cited by 5 publications
(8 citation statements)
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“…It was found that under excitation cationic ring-opening polymerization of the twin monomer 12 arose to give phenolic resin and polysiloxane, while 13 acted as crosslinking agent. [86] Scanning electron microscope (= SEM) investigations confirmed that the corresponding photo-cured film showed no macroscopic phase separation. Additionally, the generated film displayed good light transmittance.…”
Section: Orthosilicates and Oxasilanesmentioning
confidence: 89%
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“…It was found that under excitation cationic ring-opening polymerization of the twin monomer 12 arose to give phenolic resin and polysiloxane, while 13 acted as crosslinking agent. [86] Scanning electron microscope (= SEM) investigations confirmed that the corresponding photo-cured film showed no macroscopic phase separation. Additionally, the generated film displayed good light transmittance.…”
Section: Orthosilicates and Oxasilanesmentioning
confidence: 89%
“…The two monomers showed good compatibility and no phase separation took place even after long‐term storage. It was found that under excitation cationic ring‐opening polymerization of the twin monomer 12 arose to give phenolic resin and polysiloxane, while 13 acted as crosslinking agent [86] . Scanning electron microscope (=SEM) investigations confirmed that the corresponding photo‐cured film showed no macroscopic phase separation.…”
Section: Twin Polymerization Monomersmentioning
confidence: 97%
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