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Facile conversion of a cellulose acetate laminate film to graphene by a lamination process and post-annealing

机译:通过层压工艺和后退火将醋酸纤维素层压膜轻松转化为石墨烯

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摘要

We have demonstrated a simple method for the synthesis of large area and mono- to few-layer graphene on a nickel foil. A cellulose acetate laminate film was coated on a nickel foil as a solid carbon source. Compared to previous synthesis methods using solid carbon sources, the mentioned carbon source can be easily coated on the metal catalyst layer. The uniform graphene layer could be grown on the nickel catalyst layer due to the uniformity of the solid carbon source layer, which was made of a cellulose acetate laminate film coated by the cold press lamination process. The graphene was grown from the cellulose acetate laminate film without explosive gaseous carbon sources usually used in the growth of graphene by CVD methods. A series of processes mentioned above could start and end with the lamination process. In order to control the thickness of the graphene layer, the graphene samples were annealed at various temperatures and durations. The sheet resistance and transmittance of the transferred graphene on a PET substrate were 4240-100 Ω sq.~(-1) and 85-60%, respectively. To demonstrate the practical use of graphene, a flexible PLED was fabricated on the graphene electrode synthesized through the method mentioned above. The maximum luminance and luminance efficiency were 4040 Cd m~(-1) at 6.8 V and 8.2 Cd A~(-1) at 4.0 V. To our knowledge, this is the first report on a typical PLED fabricated on the graphene electrode from a solid carbon source.
机译:我们已经证明了一种在镍箔上合成大面积和单层至几层石墨烯的简单方法。将乙酸纤维素层压膜涂覆在作为固体碳源的镍箔上。与先前使用固体碳源的合成方法相比,所提及的碳源可以容易地涂覆在金属催化剂层上。由于固体碳源层的均匀性,均匀的石墨烯层可以在镍催化剂层上生长,该固体碳源层由通过冷压层压工艺涂覆的乙酸纤维素层压膜制成。石墨烯是从醋酸纤维素层压膜中生长的,而没有爆炸性气态碳源,通常通过CVD方法在石墨烯的生长中使用。上面提到的一系列过程可以从层压过程开始和结束。为了控制石墨烯层的厚度,将石墨烯样品在各种温度和持续时间下退火。 PET基底上转移的石墨烯的薄层电阻和透射率分别为4240-100Ωsq。(-1)和85-60%。为了证明石墨烯的实际用途,在通过上述方法合成的石墨烯电极上制备了柔性PLED。最大亮度和亮度效率在6.8 V时为4040 Cd m〜(-1),在4.0 V时为8.2 Cd A〜(-1)。据我们所知,这是有关石墨烯电极上制造的典型PLED的首次报道。固体碳源。

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