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具有二阶非线性光学性质的共晶聚合物薄膜

Cocrystalline Polymer Films Exhibiting Second-Order Nonlinear Optical Properties.

作者信息

Xu Yifan, Zu Rui, Yennawar Neela H, Gopalan Venkatraman, Hickey Robert J

机构信息

Materials Science and Engineering, The Pennsylvania State University, University Park, Pennsylvania 16802, United States.

Huck Institutes of the Life Sciences, The Pennsylvania State University, University Park, Pennsylvania 16802, United States.

出版信息

ACS Macro Lett. 2021 Oct 19;10(10):1216-1222. doi: 10.1021/acsmacrolett.1c00345. Epub 2021 Sep 21.

Abstract

Tailored polymer materials exhibiting high-glass transition temperatures, cross-linked matrices, and/or strong intermolecular interactions containing electric-field poled nonlinear optical (NLO) chromophores are promising materials for applications in optical telecommunication, high-performance computing, and data transmission. Although the current design parameters have led to significant advances in NLO materials, we introduce an alternative, yet highly effective, approach in which a NLO chromophore is cocrystallized with a polymer, forming a noncentrosymmetric hybrid host-guest complex. Specifically, poly(ethylene oxide) (PEO) and 2-chloro-4-nitroaniline (CNA) will cocrystallize and exhibit second harmonic generation (SHG) activity due to the formation of a noncentrosymmetric cocrystalline unit cell where the chromophore exhibits acentric alignment. Furthermore, the hybrid PEO/CNA films exhibit interesting SHG activity at elevated temperature in which SHG intensity decreases to zero when the cocrystal orientation randomizes due to sample melting. Aligning and maintaining a cocrystalline domain orientation via the formation of hybrid host-guest complexes, while imparting SHG properties, is an innovative approach for creating materials exhibiting SHG properties.

摘要

具有高玻璃化转变温度、交联基质和/或含有电场极化非线性光学(NLO)发色团的强分子间相互作用的定制聚合物材料,是用于光通信、高性能计算和数据传输的有前途的材料。尽管当前的设计参数已使NLO材料取得了重大进展,但我们引入了一种替代但高效的方法,其中NLO发色团与聚合物共结晶,形成非中心对称的杂化主客体复合物。具体而言,聚环氧乙烷(PEO)和2-氯-4-硝基苯胺(CNA)将共结晶,并由于形成非中心对称的共晶晶胞而表现出二次谐波产生(SHG)活性,其中发色团呈现非中心对齐。此外,PEO/CNA杂化膜在升高的温度下表现出有趣的SHG活性,当由于样品熔化导致共晶取向随机化时,SHG强度降至零。通过形成杂化主客体复合物来排列和维持共晶域取向,同时赋予SHG特性,是一种创造具有SHG特性材料的创新方法。

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