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Photoresponsive diblock copolymers bearing strong push-pull azo chromophores and mesogenic biphenyl groups

机译:带有强推挽偶氮发色团和介晶联苯基的光敏二嵌段共聚物

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摘要

A series of diblock copolymers bearing strong push—pull azo chromophores and mesogenic biphenyl groups in the respective blocks was synthesized by reversible addition fragmentation chain transfer polymerization through two successive polymerization steps. All the diblock copolymers with different ratios of the block lengths exhibited photoinduced birefringence behavior similar to a corresponding azo homopolymer. After switching off the irradiation light, the birefringence relaxation of the diblock copolymers was found to be much smaller compared with that of the azo homopolymer, which is a very attractive advantage for photo-storage applications. On the other hand, the surface-relief-grating formation observable for azo homopolymer could not be detected for the diblock copolymers. The results indicate that the photoresponsive properties of the azo polymer block are closely related with the phase-separated structure of the diblock copolymers and can be further optimized to meet the requirement for specific applications.
机译:通过可逆的加成断裂链转移聚合,通过两个连续的聚合步骤,合成了在各自的嵌段中带有强推挽式偶氮发色团和介晶联苯基的一系列二嵌段共聚物。具有不同嵌段长度比例的所有二嵌段共聚物都表现出与相应的偶氮均聚物相似的光致双折射行为。在切断照射光之后,发现二嵌段共聚物的双折射弛豫比偶氮均聚物的双折射弛豫小得多,这对于光存储应用是非常有吸引力的优点。另一方面,对于二嵌段共聚物,未检测到偶氮均聚物可观察到的表面浮雕形成。结果表明,偶氮聚合物嵌段的光响应性能与二嵌段共聚物的相分离结构密切相关,可以进一步优化以满足特定应用的要求。

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