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Advances in Organic All-Optical Photorefractive Materials

机译:有机全光学光折变材料的研究进展

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Organic all-optical photorefractive (PR) materials will soon become an interesting topic owing to the convenient signal-writing without the application of external electrical field and poling, even without any photosensitizer. In this paper, organic all-optical PR materials synthesized in our laboratory have been systematically summarized including organic monolithic PR molecular glasses with a linear or hyperbranched chemical structure such as organic carbazole/triphenylaminebased amorphous compounds, and PR polymers with a non-conjugated main chain (NCMC) such as polymethacrylates, polyphosphazenes and polynorbornenes. Much progress has been made not only in the synthesis strategy of organic all-optical materials but also in understanding the primary mechanism of all-optical PR effect in organic materials. It is believed that the outcoming of organic all-optical PR materials will broaden the application fields of organic PR materials.
机译:有机全光学光折变(PR)材料很快将成为一个有趣的话题,因为即使不使用任何光敏剂,也无需施加外部电场和极化即可方便地进行信号写入。本文对本实验室合成的有机全光学PR材料进行了系统地总结,包括具有线性或超支化化学结构的有机整体PR分子玻璃,例如有机咔唑/三苯胺基非晶化合物,以及具有非共轭主链的PR聚合物。 (NCMC),例如聚甲基丙烯酸酯,聚磷腈和聚降冰片烯。不仅在有机全光学材料的合成策略上,而且在理解有机材料全光学PR效应的主要机理方面都取得了很大的进展。相信有机全光学PR材料的问世将拓宽有机PR材料的应用领域。

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