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Synthesis and properties of chiral chromophore-functionalized polybinaphthalenes for nonlinear optics: Influence of chromophore concentration

机译:用于非线性光学的手性生色团官能化聚双萘的合成及性能:生色团浓度的影响

摘要

A series of chromophore-functionalized polybinaphthalenes have been prepared and characterized for their (nonlinear optical) properties. The polymers were prepared by direct polymerization using a Stille coupling between a bis(trimethyltin) compound and dibromo-substituted binaphthalene monomers. The chromophores were attached to the binaphthalene unit via an alkyl spacer. The influence of the chromophore concentration, spacer length, and number of chromophores per binaphthalene unit was studied. The typical treelike macromolecular architecture of these molecules gives rise to a unique behavior in the glass transition temperature, NMR, and nonlinear optical properties. The nonlinear optical response shows a continuous increase in function of the chromophore content. In this way, the nonlinear optical properties can be increased in a way that is not possible with other chromophore-functionalized polymer materials.
机译:已经制备了一系列生色团官能化的聚双萘并对其(非线性光学)性质进行了表征。通过使用双(三甲基锡)化合物和二溴取代的双萘单体之间的Stille偶联,通过直接聚合制备聚合物。发色团通过烷基间隔基连接至双萘单元。研究了生色团浓度,间隔基长度和每个双萘单元生色团数的影响。这些分子的典型树状大分子结构在玻璃化转变温度,NMR和非线性光学性质方面具有独特的表现。非线性光学响应显示出生色团含量的函数连续增加。以这种方式,可以以其他生色团官能化的聚合物材料不可能的方式增加非线性光学性质。

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