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Highly controllable transparent and conducting thin films using layer-by-layer assembly of oppositely charged reduced graphene oxides

机译:使用带相反电荷的还原石墨烯氧化物的逐层组装,可高度控制的透明导电薄膜

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摘要

A new approach for the fabrication of reduced graphene oxide (rGO) multilayers which can be used for transparent and conducting thin films was developed. This was achieved by using layer-by-layer (LbL) assembly of positively and negatively charged rGO sheets, which could provide highly controllable thin films in terms of thickness, transmittance, and sheet resistance. In particular, the thickness of the multilayer thin films of rGO was able to be controlled precisely in the subnanometre scale by similar to 0.46 nm via simply varying the number of stacking layers. Therefore, this method enabled an excellent control of the rGO multilayers over the optical and electrical properties, which are related to the thickness. Furthermore, we demonstrated the application of the rGO multilayers for an OLED device.
机译:开发了一种新的制造可用于透明和导电薄膜的氧化石墨烯(rGO)多层的方法。这是通过使用带正电和带负电的rGO板的逐层(LbL)组件实现的,该组件可以在厚度,透射率和薄层电阻方面提供高度可控的薄膜。特别地,通过简单地改变堆叠层的数量,rGO的多层薄膜的厚度能够被精确地控制在亚纳米级,类似于0.46nm。因此,该方法能够很好地控制与厚度有关的rGO多层的光学和电学性能。此外,我们展示了rGO多层在OLED器件中的应用。

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