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Photorefractive polymer composites based on nanosized nonlinear optical chromophores

机译:基于纳米非线性光学发色团的光折变聚合物复合材料

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Photorefractive (PR) polymer composites based on polymers with a high glass transition temperature in which the random distribution of a photosensitizer and a nonlinear optical chromophore as dopants is "frozen" were designed. In the case of the random distribution of chromophores, only the third-order electric susceptibility has a nonzero value. Therefore, nanosized structures having high third-order polarizability due to an extended conjugated-bond system (or cooperative electronic excitation) were used as nonlinear chromophores. Good PR characteristics are displayed by polymeric composites containing nanosized structures, such as cyanine dye J aggregates, supramolecular assemblies of ruthenium(II) complexes, and single-wall carbon nanotubes. The use of extended nanosized chromophores as simultaneous spectral sensitizers allowed polymer composites with PR sensitivity in the near IR region at 1064 and 1550 nm to be designed.
机译:设计了基于具有高玻璃化转变温度的聚合物的光折变(PR)聚合物复合材料,其中光敏剂和非线性光学发色团作为掺杂剂的随机分布被“冻结”。在生色团随机分布的情况下,只有三阶电化率具有非零值。因此,由于扩展的共轭体系(或协同电子激发)而具有高三阶极化率的纳米级结构被用作非线性发色团。包含纳米结构的聚合物复合材料(例如花青染料J聚集体,钌(II)配合物的超分子组装体)和单壁碳纳米管表现出良好的PR特性。使用扩展的纳米级生色团作为同时的光谱增感剂,可以设计在1064和1550 nm的近红外区域具有PR敏感性的聚合物复合材料。

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