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Fabrication of highly fluorescent perylene bisimide nanofibers through interfacial self-assembly

机译:通过界面自组装制备高荧光per双酰亚胺纳米纤维

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摘要

Perylene diimides are typical n-type organic semiconductors with interesting optical and electronic properties. Versatile properties of these compounds are deeply related to the morphologies of the self-assembled nanostructures. Self-assembled strong red fluorescent nanofibers of N,. N'-bis(1-dodecyl)perylene-3,4,9,10-tetracarboxylic diimide (D-PTCDI) were successfully prepared by a solution based phase-transfer method. Morphology of the nanostructure was characterized by optical, fluorescence, scanning, and transmission electron microscopic techniques. Observed molecular self-assembly was supported by the computational predictions. Thin film of the D-PTCDI was casted on glass substrate by spin-coating. UV-vis absorption maximum of the thin film was shifted to longer wavelength than in solution. Conducting properties of the thin films were evaluated by current-voltage measurements.
机译:ylene二酰亚胺是典型的具有有趣的光学和电子特性的n型有机半导体。这些化合物的多功能性与自组装纳米结构的形态密切相关。 N的自组装强红色荧光纳米纤维。通过基于溶液的相转移方法成功制备了N'-双(1-十二烷基))-3,4,9,10-四羧酸二酰亚胺(D-PTCDI)。纳米结构的形貌通过光学,荧光,扫描和透射电子显微镜技术表征。观察到的分子自组装得到了计算预测的支持。通过旋涂将D-PTCDI的薄膜浇铸在玻璃基板上。薄膜的最大紫外线可见吸收移至比溶液中更长的波长。通过电流-电压测量来评估薄膜的导电性能。

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