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Synthesis and second-order nonlinear optical properties of a crosslinkable functionalized hyperbranched polymer

机译:可交联官能化超支化聚合物的合成和二阶非线性光学性质

摘要

A new implementation of copper-free thermal Huisgen 1,3-dipolar crosslinking reaction into a high Tg hyperbranched polyimide polymer in order to stabilize the electro-optic (EO) activity of second-order non linear materials is reported. Towards this goal, two different synthetic approaches were explored. The first strategy is based on the post-functionalization of the polymer with mixtures of DR1 azido derivative and propargylic alcohol, whereas, the second consists in the preparation of two complementary functionalized hyperbranched polymers that are mixed just before the preparation of films. Materials exhibit good second-order nonlinear optical coefficients (d33) close to 30 pm/V at the fundamental wavelength of 1064 nm. Moreover, the thermal stability of the NLO properties of these materials reaches temperatures as high as 150°C, and probably higher. This represents the highest thermal stability of crosslinkable EO polymers based on the crosslinking Huisgen reaction.
机译:为了稳定二阶非线性材料的电光(EO)活性,报告了一种新的将无铜的热惠斯根1,3-偶极交联反应应用于高Tg超支化聚酰亚胺聚合物的新方法。为了实现这一目标,探索了两种不同的合成方法。第一种策略是基于聚合物与DR1叠氮基衍生物和炔丙基醇的混合物的后官能化,而第二种策略是制备两种互补的官能化的超支化聚合物,这些聚合物在制备薄膜之前就进行了混合。材料在1064nm的基本波长处表现出接近30 pm/V的良好的二阶非线性光学系数(d33)。而且,这些材料的NLO性能的热稳定性达到了150°C甚至更高的温度。这代表基于交联惠斯根反应的可交联EO聚合物的最高热稳定性。

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