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A Study on the Photopolymerization of Acrylic Monomers Having Floorene Moiety for the Application of Holographic Data Storage System

机译:具有地板烯部分的丙烯酸单体的光聚合在全息数据存储系统中的应用研究

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We have prepared photopolymer compositions for holographic data storage system from aromatic diacrylate having fluorine moiety, a hybrid sol-gel, and photoinitiator. The fluorenyl diacrylate monomer was synthesized via nucleophilic substitution reaction of fiuorene diphenol with an excess of 2-chloroethoxyethanol, followed by the reaction with acryloyl chloride. The physical and holographic properties of photopolymer were controlled by the ratio of precursor triethoxysilylpropyl polyethyleneglycol carbamate (TSPEG) in a hybrid sol-gel binder and the content of monomer. Also, we measured the photopolymerization rate and conversion of monomer by photo-differential scanning calorimeter (photo-DSC). Holographic recording was attempted by photopolymerization of the monomers in the photopolymer film using a 532 nm laser light in the presence of Irgacure 784 and holographic gratings were recorded into the photopolymer films by interfering two collimated plane wave beams. Contents of monomer and TSPEG were changed in the range of 0.25-1.0 equiv. and the composition were optimized in terms of diffraction efficiency. Finally, we obtained that efficient photopolymer films showed diffraction efficiency of 78% when 0.5 equiv. of TESPEG in sol-gel binder and 40% of compound 4 were added.
机译:我们已经从具有氟部分的芳族二丙烯酸酯,杂化溶胶-凝胶和光引发剂制备了用于全息数据存储系统的光聚合物组合物。通过芴二酚与过量的2-氯乙氧基乙醇的亲核取代反应,然后与丙烯酰氯反应,合成芴基二丙烯酸酯单体。光聚合物的物理和全息性质由混合溶胶-凝胶粘合剂中的前体三乙氧基甲硅烷基丙基聚乙二醇氨基甲酸酯(TSPEG)的比例和单体含量控制。另外,我们通过光差扫描量热仪(photo-DSC)测量了光聚合速率和单体转化率。在Irgacure 784存在下,通过使用532 nm激光在光敏聚合物膜中进行单体的光聚合来尝试进行全息记录,并且通过干涉两个平行的平面光束将全息光栅记录到光敏聚合物膜中。单体和TSPEG的含量在0.25-1.0当量的范围内变化。并且在衍射效率方面优化了组成。最后,我们获得了当0.5当量时有效的光敏聚合物薄膜显示出78%的衍射效率。加入溶于溶胶-凝胶粘合剂中的TESPEG和40%的化合物4。

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