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Solution-processable reduced graphene oxide template layer for molecular orientation control of organic semiconductors

机译:用于有机半导体分子取向控制的可溶液处理的还原氧化石墨烯模板层

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A reduced graphene oxide (rGO) film is first applied to a surface template layer to control the molecular orientation of crystalline organic semiconductors. The ultrathin and ultrasmooth rGO layer was successfully prepared on a substrate without a transfer process by spin-coating a carefully purified GO aqueous dispersion. This rGO layer exhibited a strong templating effect rivaling monolayer graphene, inducing a face-on orientation of copper phthalocyanine molecules leading to significant improvement of vertical carrier mobilities. The highly-conductive and transparent rGO film does not hamper charge transport at the interface and photoabsorption unlike conventional templating materials. This method can be widely used for vertical organic devices that require high carrier mobilities and strong photoabsorption/emission.
机译:首先将还原的氧化石墨烯(rGO)膜应用于表面模板层,以控制晶体有机半导体的分子取向。通过旋涂精心纯化的GO水性分散体,无需转移过程即可在基材上成功制备超薄且超光滑的rGO层。该rGO层具有可与单层石墨烯媲美的强大模板效应,可诱导铜酞菁分子面对面取向,从而显着改善垂直载流子迁移率。与传统的模板材料不同,高导电性和透明性的rGO膜不会妨碍界面处的电荷传输和光吸收。该方法可广泛用于要求高载流子迁移率和强光吸收/发射的垂直有机器件。

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