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Comparison of a new photosensitizer with erythrosine B in an AA/PVA-based photopolymer material

机译:AA / PVA基光敏聚合物材料中新型光敏剂与赤藓红B的比较

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摘要

Dyes often act as the photoinitiator PI/photosensitizer PS in photopolymer materials and are therefore of significant interest. The properties of the PI/PS used strongly influences grating formation when the material layer is exposed holographically. In this paper, the ability of a recently synthesized dye, D_1, to sensitize an acrylamide/polyvinyl alcohol (AA/PVA) based photopolymer is examined, and the material performance is characterized using an extended nonlocal photopolymerization-driven diffusion model. Electron spin resonance spin-trapping (ESR-ST) experiments are also carried out to characterize the generation of the initiator/primary radical, R~·, during exposure. The results obtained are then compared with those for the corresponding situation when using a xanthene dye, i.e., erythrosine B, under the same experiment conditions. The results indicate that the nonlocal effect is greater when this new photosensitizer is used in the material. Analysis indicates that this is the case because of the dye's (D_1) weak absorptivity and the resulting slow rate of primary radical production.
机译:染料通常在光敏聚合物材料中充当光引发剂PI /光敏剂PS,因此引起人们极大的兴趣。当材料层通过全息曝光时,所使用的PI / PS的特性会严重影响光栅的形成。在本文中,研究了最近合成的染料D_1对基于丙烯酰胺/聚乙烯醇(AA / PVA)的光敏聚合物的敏化能力,并使用扩展的非局部光敏驱动扩散模型表征了材料性能。还进行了电子自旋共振自旋俘获(ESR-ST)实验,以表征在曝光过程中引发剂/主自由基R〜·的生成。然后将获得的结果与在相同实验条件下使用a吨染料即赤藓红B时相应情况的结果进行比较。结果表明,当在材料中使用这种新的光敏剂时,非局部效应更大。分析表明是这种情况,因为染料(D_1)的吸收率较弱,并且导致初级自由基产生的速度较慢。

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