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Photoelectric, nonlinear optical, and photorefractive properties of polymer composites including carbon nanotubes and cyanine dyes

机译:碳纳米管和花青染料等聚合物复合材料的光电,非线性光学和光折变特性

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The effect of cyanine dye additives on the photoelectric, nonlinear optical, and photorefractive properties of polyvinyl carbazole composites based on closed single-walled carbon nanotubes has been investigated. It has been found that these characteristics are affected by the dye in which the lowest unoccupied molecular orbital (LUMO) lies below the level of the photoexcited nanotube. The addition of this dye to the composite leads to a 14-fold increase in the quantum efficiency of the generation of mobile charge carriers under irradiation by a laser (1064 nm) in the absorption region of the nanotubes. Moreover, the addition of the dye to the composite decreases the third-order susceptibility χ~((3)), presumably, due to the opposite orientations of dipoles of the dye and the nanotube upon adsorption of the dye on the nanotube. The addition of the dye to the composite also provides a twofold increase in the two-beam photorefractive amplification factor of the laser beam with a wavelength of 1064 nm. The obtained values of the two-beam photorefractive amplification factor reach 120 cm~(-1).
机译:研究了花菁染料添加剂对基于封闭单壁碳纳米管的聚乙烯咔唑复合材料的光电,非线性光学和光折变性能的影响。已经发现这些特性受到染料的影响,其中最低的未占据分子轨道(LUMO)位于光激发纳米管的水平以下。将该染料添加到复合物中,在纳米管的吸收区域中在激光(1064 nm)照射下,移动电荷载流子的产生量子效率提高了14倍。此外,将染料添加到复合物中会降低三阶磁化率χ〜((3)),这大概是由于染料和纳米管吸附染料后,其偶极子和纳米管的取向相反。向复合物中添加染料也使波长为1064 nm的激光束的双光束光折变放大系数增加了两倍。所获得的两束光折变放大倍数达到120 cm〜(-1)。

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