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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Acrylate photopolymer doped with ZnO nanoparticles: an interesting candidate for photo-patterning applications
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Acrylate photopolymer doped with ZnO nanoparticles: an interesting candidate for photo-patterning applications

机译:ZnO纳米粒子掺杂的丙烯酸酯光敏聚合物:在光图案化应用中一个有趣的候选对象

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The study is devoted to the photo-patterning of photopolymers doped with dispersed ZnO quantum dots (QDs). It is checked first that ZnO QDs retain their fluorescence properties upon polymerization of the acrylate monomer mixtures. The photosensitizer (camphorquinone in our work, CQ) plays an important role in the polymerization process. Experimental and theoretical investigations are undertaken to understand the observed differences induced by the addition of a tertiary amine co-initiator species. Indeed, it is shown experimentally that in the presence of a co-initiator, when the maximum of monomer conversion is reached, the concentration of camphorquinone starts to decrease, whereas a new compound that absorbs at 390 nm is produced. It is proposed here on the basis of theoretical calculations that this species is the charge transfer complex [CQ~(·-)—amine~(·+)], which is stabilized in high viscous media. Then, it was shown that the addition of ZnO QDs does not modify the kinetics of polymerization but rather contributes to the enhancement of the refractive index modulation (an increase of 33% is observed) because of their spatial distribution.
机译:该研究致力于掺杂有分散的ZnO量子点(QD)的光敏聚合物的光图案化。首先检查,在丙烯酸酯单体混合物聚合后,ZnO QD保持其荧光性质。光敏剂(在我们的工作中为樟脑醌,CQ)在聚合过程中起着重要作用。进行实验和理论研究以了解观察到的由添加叔胺共引发剂引起的差异。实际上,实验表明,在共引发剂的存在下,当达到最大单体转化率时,樟脑醌的浓度开始降低,而产生了在390 nm处吸收的新化合物。在理论计算的基础上,本文提出该物质为电荷转移络合物[CQ〜(·-)-胺〜(+)],在高粘度介质中稳定。然后表明,ZnO QD的添加不会改变聚合动力学,而是由于其空间分布而有助于增强折射率调制(观察到增加了33%)。

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