Wu Junhui, Jin Junchao, Hu Po, Li Jinhong, Zeng Zeyi, Li Qingdong, Liu Jie, Chen Mingyong, Zhang Zuoyu, Wang Li, Lin Xiao, Tan Xiaodi
College of Photonic and Electronic Engineering, Fujian Normal University, Fuzhou 350117, China.
Henan Provincial Key Laboratory of Intelligent Lighting, Huanghuai University, Zhumadian 463000, China.
Polymers (Basel). 2024 May 23;16(11):1484. doi: 10.3390/polym16111484.
Phenanthrenequinone-doped poly(methyl methacrylate) (PQ/PMMA) photopolymers are potential holographic storage media owing to their high-density storage capacities, low costs, high stability, and negligible shrinkage in volume holographic permanent memory. However, because of the limitations of the substrate, conventional Plexiglas materials do not exhibit a good performance in terms of photosensitivity and molding. In this study, the crosslinked structure of PMMA was modified by introducing a dendrimer monomer, pentaerythritol tetraacrylate (PETA), which increases the photosensitivity of the material 2 times (from ~0.58 cm/J to ~1.18 cm/J), and the diffraction efficiency is increased 1.6 times (from ~50% to ~80%). In addition, the modified material has a superior ability to mold compared to conventional materials. Moreover, the holographic performance enhancement was evaluated in conjunction with a quantum chemical analysis. The doping of PETA resulted in an overall decrease in the energy required for the reaction system of the material, and the activation energy decreased by ~0.5 KJ/mol in the photoreaction stage.
菲醌掺杂的聚甲基丙烯酸甲酯(PQ/PMMA)光聚合物因其高密度存储容量、低成本、高稳定性以及在体全息永久存储中可忽略不计的体积收缩,而成为潜在的全息存储介质。然而,由于基材的限制,传统的有机玻璃材料在光敏性和成型方面表现不佳。在本研究中,通过引入树枝状单体季戊四醇四丙烯酸酯(PETA)对PMMA的交联结构进行改性,这使材料的光敏性提高了2倍(从约0.58 cm/J提高到约1.18 cm/J),衍射效率提高了1.6倍(从约50%提高到约80%)。此外,与传统材料相比,改性材料具有更优异的成型能力。此外,结合量子化学分析对全息性能增强进行了评估。PETA的掺杂导致材料反应体系所需能量总体降低,在光反应阶段活化能降低了约0.5 KJ/mol。