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Improvement of Photorefractivity in PVK Based Composite by Doping of Graphene

机译:石墨烯掺杂改善PVK基复合材料的光折射率

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The effect of graphene was investigated on photorefractivity in the composite consisting of hole transporting poly(N -vinyl carbazole) (PVK) (44.5 wt%), electro-optically active 4-(azepan-1-yl) benzylidenemalononitrile (7-DCST) (35.0 wt%), plasticizing dibutyl phthalate (DBP) (20.0 wt%), and photosensitizing fullerene (C_(60)) (0.5 wt%) by changing the amount of graphene from 0 to 0.1 wt% and monitoring the two beam coupling gain coefficient. It is found that the gain coefficient drastically increased by the addition of graphene and reached maximum at the content of around 0.005-0.007 wt% (e.g ., it was 112 cm~(--1 )at 41.7 V/μm at 0.005 wt%). Beyond the maximum, the gain coefficient went through the local minimum value at around 0.05 wt%, and then gradually increased till 0.1 wt%. These results suggested that at the lower content, graphene worked as trap sites, and at the higher content, the nature of trap sites was changed by the onset of the overlap of graphene sheets.
机译:研究了石墨烯对空穴传输的聚(N-乙烯基咔唑)(PVK)(44.5 wt%),光电活性的4-(氮杂-1-基)苄叉基丙二腈(7)组成的复合材料的光折射率的影响-DCST)(35.0 wt%),增塑邻苯二甲酸二丁酯(DBP)(20.0 wt%)和光敏富勒烯(C_(60))(0.5 wt%),方法是将石墨烯的量从0更改为0.1 wt%并监控两束耦合增益系数。发现通过添加石墨烯,增益系数急剧增加,并且在约0.005-0.007wt%的含量(例如,在41.7V /μm下为112cm〜(-1))达到最大。 0.005重量%)。超出最大值后,增益系数在0.05 wt%附近通过局部最小值,然后逐渐增加到0.1 wt%。这些结果表明,在较低含量下,石墨烯充当陷阱位点,而在较高含量下,陷阱位点的性质因石墨烯片材重叠的发生而改变。

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