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Photosensitivity of sol-gel-derived nanocomposites in optical device deposition: an in-situ spectroscopic study

机译:溶胶-凝胶衍生的纳米复合材料在光学器件沉积中的光敏性:原位光谱研究

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Abstract: An in situ waveguide Raman spectroscopy experiment was designed to monitor structural changes that occurred when a hybrid sol gel glass thin film was irradiated with UV light. Raman scatter was collected from an Ar$+$PLU$/ laser 514.5 TE$-0$/ mode excited in the waveguide. Insight into the photoinduced changes in the glass was obtained by collecting real time WR spectra as the slab waveguide was irradiated simultaneously with UV light. Photoinduced polymerization of the organic group is linked to enhanced inorganic network formation. Silicon centers are brought closer together as their covalently attached methacrylate substituents oligomerize upon irradiation. This promotes further polycondensation reactions between residual Si-OH and residual Si-OCH$-3$/ groups. The resulting siloxane bonds contribute to the growth of the silicate matrix. This photodensification process leads to volume compaction of the matrix and hence to an increase in the material refractive index. !20
机译:摘要:设计了原位波导拉曼光谱实验,以监测混合溶胶凝胶玻璃薄膜受到紫外线照射时发生的结构变化。拉曼散射是从在波导中激发的Ar $ + PLU $ /激光514.5 TE $ -0 $ /模式收集的。通过收集平板波导同时受到紫外光照射的实时WR光谱,可以了解玻璃的光致变化。有机基团的光诱导聚合与增强的无机网络形成有关。由于它们的共价连接的甲基丙烯酸酯取代基在辐射下低聚,因此硅中心更靠近在一起。这促进了残留的Si-OH和残留的Si-OCH $ -3 $ /之间的进一步缩聚反应。所得的硅氧烷键有助于硅酸盐基质的生长。该光致密化过程导致基质的体积致密化,并因此导致材料折射率的增加。 !20

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