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Incorporation of highly efficient second- and third-order nonlinear optical chromophores into poly(amido-amine) backbones

机译:将高效的第二和三阶非线性光学色影掺入聚(氨基胺)骨架中

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We report here on the synthesis of new polymers carrying chromophores active for second- and third-order nonlinear optical (NLO) applications. Some of these systems show exceptionally large NLO molecular properties such as high first hyperpolarizabilities and high two-photon-pumped frequency-upconversion lasing efficiencies. Different types of polymeric and copolymeric backbones have been investigated in order to tune the properties of the bulk material and optimize its efficiency. Factors such as the linking reaction approach, chromophore number density, cross-linking ratio, and thermal properties can be controlled and tuned depending on the application. In particular, we have found that NLO molecular components carrying a primary amino group attached to the chromophore by means of a short aliphatic chain can act as comonomers in poly(amino-amine) synthesis, a family of synthetic polymers in which amido and tertiary amino groups are regularly arranged along the main backbone. Linear and soluble, or, alternatively highly crosslinked poly(amido-amine) networks can be easily obtained with high loading of the chromophore. In addition, hydroxylated chromophores can be covalently linked to properly functionalized acrylic polymers, such as poly(2-methacryloxyethyl)imidazolylformate.
机译:我们在此报告用于携带发色团的新聚合物的合成活性为二阶和三阶非线性光学(NLO)应用。其中一些系统显示出极高的NLO分子特性,例如高第一次超极化和高双光子泵浦频率上变频激光效率。已经研究了不同类型的聚合物和共聚骨架,以调节散装材料的性质并优化其效率。可以根据应用控制和调整连接反应方法,色团数密度,交联比和热性能等因素。特别地,我们发现,通过短脂族链携带连接到发色团的主要氨基的NLO分子分子可以作为聚(氨基 - 胺)合成中的共聚单体,其中一系列合成聚合物,其中amido和叔氨基团体定期排列主骨干。线性和可溶性,或者,可以容易地获得高负荷的发色团可以容易地获得线性和可溶性的聚(酰胺胺)网络。另外,羟基化的发色团可以与适当官能化的丙烯酸聚合物共价连接,例如聚(2-甲基丙烯酰氧基乙基)咪唑基甲酸酯。

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