Centre for Industrial and Engineering Optics, Dublin Institute of Technology , Dublin 8, Ireland.
Department of Mathematics, Informatics and Physics, Agricultural University , Plovdiv, Bulgaria.
ACS Appl Mater Interfaces. 2016 Jul 20;8(28):18481-7. doi: 10.1021/acsami.6b05528. Epub 2016 Jul 8.
A novel composition for a low-toxicity, water-soluble, holographic photopolymer capable of recording bright reflection gratings with diffraction efficiency of up to 50% is reported. The unique combination of two chemical components, namely, a chain transfer agent and a free radical scavenger, is reported to enhance the holographic recording ability of a diacetone acrylamide (DA)-based photopolymer in reflection mode by 3-fold. Characterization of the dependence of diffraction efficiency of the reflection gratings on spatial frequency, recording intensity, exposure energy, and recording wavelength has been carried out for the new low-toxicity material. The use of UV postexposure as a method of improving the stability of the photopolymer-based reflection holograms is reported. The ability of the modified DA photopolymer to record bright Denisyuk holograms which are viewable in different lighting conditions is demonstrated.
一种低毒性、水溶性、全光聚合物的新型组成物,可记录高达 50%衍射效率的明亮反射光栅。据报道,两种化学组分的独特组合,即链转移剂和自由基清除剂,可将基于二丙酮丙烯酰胺(DA)的光聚合体在反射模式下的全息记录能力提高 3 倍。对新的低毒性材料进行了反射光栅的衍射效率对空间频率、记录强度、曝光能量和记录波长的依赖性的特性研究。报道了使用紫外线后曝光作为提高基于光聚合体的反射全息图稳定性的方法。演示了经改良的 DA 光聚合体记录可在不同照明条件下观看的明亮丹尼苏克全息图的能力。