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用于高效热稳定电光聚合物的偶极发色团促进的惠斯根交联反应

Dipolar Chromophore Facilitated Huisgen Cross-Linking Reactions for Highly Efficient and Thermally Stable Electrooptic Polymers.

作者信息

Shi Zhengwei, Cui Yue-Zhi, Huang Su, Li Zhong'an, Luo Jingdong, Jen Alex K-Y

机构信息

School of Chemistry and Pharmaceutical Engineering, Shandong Polytechnic University, 250100, Jinan, P. R. China.

出版信息

ACS Macro Lett. 2012 Jul 17;1(7):793-796. doi: 10.1021/mz300189p. Epub 2012 Jun 11.

Abstract

Efficient thermal cross-linking protocol for an azide-alkyne-based Huisgen 1,3-dipolar cycloaddition reaction has been developed for making highly efficient electrooptic (EO) polymers. The material system is based on an azide-containing side-chain copolymer and cross-linkable dendronized chromophores that have two pairs of dendritic bispropargyl ether moiety on the periphery. The dendritic chromophore possesses a tetraene conjugating bridge and strong dialkylaminophenyl donor and CF-TCF acceptor. This material system not only provides adequate accessibility for propargyl ether to react azido-containing moieties for efficient cross-linking but also gives the rotational freedom needed for electric field poling. The site isolation offered by the bispropargyl ether dendron effectively suppresses the unwanted side reactions that are usually associated with the decompositions of azides and chromophores. Due to these concerted efforts, it allows the Huisgen 1,3-dipolar cycloaddition reactions to be carried out at moderate temperatures in polar media that have a high concentration of dipolar polyene chromophores. Through sequential electric field poling and in situ cross-linking, the poled films exhibit very large EO activity (up to 147 pm/V at 1.31 μm) with a long-term alignment stability at 85 °C.

摘要

已开发出一种用于基于叠氮化物 - 炔烃的惠斯根1,3 - 偶极环加成反应的高效热交联方案,用于制备高效电光(EO)聚合物。该材料体系基于一种含叠氮化物的侧链共聚物和可交联的树枝状发色团,其外围具有两对树枝状双炔丙基醚部分。树枝状发色团具有一个四烯共轭桥以及强二烷基氨基苯基供体和CF - TCF受体。这种材料体系不仅为炔丙基醚与含叠氮基部分反应以实现高效交联提供了足够的可及性,而且还赋予了电场极化所需的旋转自由度。双炔丙基醚树枝体提供的位点隔离有效地抑制了通常与叠氮化物和发色团分解相关的不必要的副反应。由于这些协同作用,使得惠斯根1,3 - 偶极环加成反应能够在具有高浓度偶极多烯发色团的极性介质中在中等温度下进行。通过顺序电场极化和原位交联,极化膜表现出非常大的电光活性(在1.31μm处高达147 pm/V),并且在85°C下具有长期取向稳定性。

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