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Diffusion model of monomers in a photopolymer film for holographic recording

机译:全息照相用光聚合物膜中单体的扩散模型

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摘要

Diffusion model of monomers in holographic recording media was investigated to determine diffraction efficiency and the effect of the binder structure on holographic recording in an organic-inorganic hybrid photopolymers. Experimental value and rise of diffraction efficiency for the photopolymer films containing different organic sol-gel precursor (TSPEG) were compared with theoretical plot of diffraction intensity growth against recording time based on the first Harmonic diffusion model, using various material parameters, including the monomer diffusion constant, D, polymerization rate, refractive index of monomer, binder, and polymer. The initial rate of polymerizations in the photopolymer films, evaluated by FT-IR method was compared to the polymerization rate obtained from the simulation. Diffusion time of the photopolymer determined from the simulation was a function of TSPEG content, proving that the side chain in the organic hybrid media affect the diffusion of monomer from the dark area of the photopolymer (non-local polymerization).
机译:研究了单体在全息记录介质中的扩散模型,以确定在有机-无机杂化光聚合物中的衍射效率以及粘合剂结构对全息记录的影响。使用包括单体扩散在内的各种材料参数,将包含不同有机溶胶-凝胶前体(TSPEG)的光敏聚合物膜的实验值和衍射效率的提高与基于第一谐波扩散模型的衍射强度增长相对于记录时间的理论图进行了比较常数,D,聚合速率,单体,粘合剂和聚合物的折射率。将通过FT-IR方法评估的光敏聚合物膜中的初始聚合速率与由模拟获得的聚合速率进行比较。由模拟确定的光聚合物的扩散时间是TSPEG含量的函数,证明有机杂化介质中的侧链会影响单体从光聚合物暗区的扩散(非局部聚合)。

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