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New Cross-Linkable Polymers with Huisgen Reaction Incorporating High μβ Chromophores for Second-Order Nonlinear Optical Applications

机译:具有Huisgen反应的新型可交联聚合物,结合高发色团用于二阶非线性光学应用

摘要

We report herein the synthesis, the functionalization, and the successful radical polymerization of very nonlinear optical (NLO) active push–pull polyene chromophores (CPO). Second, the thermal Huisgen cyclo-addition cross-linking reaction was implemented, and it proved to be fully compatible with a polyene-based push–pull chromophore. Toward this goal, PMMA-co-CPO-3 and two cross-linkable polymers (PCC1-CPO-3 and PCC2-CPO-3) were first prepared and characterized by a modified Teng and Man technique performed in transmission. These first series of polymers were not compatible with the applied poling conditions because an irreversible film degradation was systematically observed at a temperature significantly lower than the cross-linking temperature. Consequently, a second series of polymers was prepared, in which the cross-linking temperature was decreased by functionalizing acetylenic moieties with ester electron withdrawing groups, which decrease the activation energy of the thermal Huisgen cyclo-addition. These new polymers were stable until the cross-linking reaction, and they exhibit bulk electro-optic coefficients (r33) until 41 pm/V at 1.5 μm. Furthermore, it was shown that the Huisgen cross-linking reaction is compatible with such push–pull polyene-based chromophores, and it systematically enhances the stability of the electro-optic activity because chromophore orientation was maintained up to 96 °C against 70 °C for the same uncross-linked polymer.
机译:我们在此报告了非常非线性光学(NLO)有源推挽多烯生色团(CPO)的合成,功能化和成功的自由基聚合。其次,实施了热惠斯根环加成交联反应,并证明它与基于多烯的推挽生色团完全兼容。为了实现这一目标,首先制备了PMMA-co-CPO-3和两种可交联聚合物(PCC1-CPO-3和PCC2-CPO-3),并通过改进的Teng and Man技术在传输中进行了表征。这些第一系列的聚合物与施加的极化条件不相容,因为在明显低于交联温度的温度下系统地观察到不可逆的膜降解。因此,制备了第二系列的聚合物,其中通过用酯电子吸收基团官能化炔基部分来降低交联温度,这降低了热惠斯根环加成的活化能。这些新的聚合物在交联反应之前是稳定的,并且在1.5μm下的体积电光系数(r33)直到41 pm / V。此外,研究表明,惠斯根交联反应与这种推挽多烯基生色团兼容,并且由于生色团相对于70°C的温度保持在96°C,因此可以系统地增强电光活性的稳定性。对于相同的未交联聚合物。

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