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Synthesis and characterization of a novel nonlinear optical hyperbranched polymer containing a highly performing chromophore

机译:含有高性能发色团的新型非线性光学超支化聚合物的合成和表征

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摘要

We report herein the peripheral functionalization of a high glass transition temperature hyperbranched polyimide with a new and highly performing electro-optic chromophore for the elaboration of a second-order nonlinear optical material. In this study, the CPO1 chromophore was selected for its very high quadratic hyperpolarizability coefficient (μβ = 31,000 ⋅ 10−48 esu at 1990 nm) and its ease of synthesis in multigram scale. As a result, the new electro-optic polymer was characterized by an r33 coefficient around 40 pm/V at 1.5 µm, although the poling conditions were not optimized. For sake of comparison, the electro-optic r33 coefficient of our previously reported similar polymer functionalized with the well-known Disperse Red One chromophore was also measured using the technique and gave a much lower r33 coefficient. This study underscores that hyperbranched polymers are particularly promising matrices to host highly efficient chromophore to achieve more efficient and more stable electro-optic devices than classical linear polymers.
机译:我们在这里报道了高玻璃化转变温度的超支化聚酰亚胺的外围功能化,其具有新型的和高性能的电光生色团,用于加工二阶非线性光学材料。在本研究中,选择CPO1发色团是因为其具有极高的二次超极化系数(在1990 nm时为μβ= 31,000⋅10-48 esu)并且易于合成(以克为单位)。结果,尽管未优化极化条件,但新的电光聚合物的特征是r33系数约为40μpm/ V(1.5μm)。为了进行比较,我们还使用该技术测量了我们先前报道的用众所周知的分散红一生色团官能化的类似聚合物的电光r33系数,得出的r33系数要低得多。这项研究强调,超支化聚合物是承载高效发色团,实现比传统线性聚合物更高效,更稳定的电光器件的特别有前途的基质。

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