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High performance holographic gratings formed with novel photopolymer films containing hyper-branched silsesquioxane

机译:由包含超支化倍半硅氧烷的新型光敏聚合物薄膜形成的高性能全息光栅

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摘要

A transparent photopolymer film was prepared by embedding the epoxy cured octaaminophenylsilsesquioxane (hyper-branched POSS) into poly(vinyl chloride) (PVC) matrix containing vinyl monomers. Holographic gratings were successfully generated in that films by irradiation of laser light with 532 nm wavelength.rnThe diffraction efficiency was increased with increasing the hyper-branched POSS concentration up to 15 wt%. DSC and TG analysis indicated the plasticizing effect of POSS in photopolymer that loosened the polymer matrix. This plasticizing effect made the monomer diffusion much more effective providing higher diffraction efficiency (D.E. ~ 80%) compared to the film without hyper-branched POSS (D.E. ~ 50%). The diffraction efficiency started to decrease with further higher concentration of POSS, because the polymer film became less transparent.rnLow volume shrinkage of 1.64% could be also obtained in recording of slanted holographic gratings.
机译:通过将环氧固化的八氨基苯基倍半硅氧烷(超支化POSS)嵌入包含乙烯基单体的聚氯乙烯(PVC)基质中,可以制备透明的光敏聚合物薄膜。通过用532 nm波长的激光辐照,成功地在该膜中产生了全息光栅。随着超支化POSS浓度增加至15 wt%,衍射效率得以提高。 DSC和TG分析表明POSS在光聚合物中的增塑作用使聚合物基质松散。与没有超支化POSS的薄膜(D.E.〜50%)相比,这种增塑作用使单体扩散更加有效,提供了更高的衍射效率(D.E.〜80%)。随着POSS浓度的进一步提高,衍射效率开始下降,这是因为聚合物薄膜变得不那么透明。在倾斜的全息光栅记录中,体积收缩率仅为1.64%。

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