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The transmittance and sheet resistance of chemically and heat reduced graphene oxide film

机译:化学和热还原氧化石墨烯薄膜的透射率和薄膜电阻

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The graphene oxide (GO) sheets were prepared from Hummer's method. The reduced process is important to graphene related materials for widely functional use in many photoelectric fields. Chemically and heat reduced treatment are carried out in this research and the electrical and optical properties of reduced GO films are measured. The size of GO sheets was examined by transmission electron microscopy with a size of about 5-6 mu m. The chemically converted graphene (CCG) film are made by spin coating method. We used different GO concentration and different spin coating times to investigate the properties of graphene transparent conductive films. As the decrease of the GO concentration of solution and the times of spin coating, the transmittance is higher. The electrical property of the mixing of GO and CCG is more stable than the GO sheets only, this is discussed in this research and it is cause by the stacking condition of sheets. The conductivity of reduced graphene oxide film come from GO is lower than that come from CCG, we suppose that is because that the overlapping is less (i.e. film-forming ability) in the former, the transmittance and sheet resistance are 56 T% and 50 kohm/sq.
机译:氧化石墨烯(GO)片材是根据Hummer方法制备的。对于在许多光电领域中广泛使用的石墨烯相关材料而言,还原工艺至关重要。在这项研究中进行了化学和热还原处理,并测量了还原的GO膜的电学和光学性质。 GO片的尺寸通过透射电子显微镜检查,尺寸为约5-6μm。化学转化的石墨烯(CCG)薄膜是通过旋涂法制备的。我们使用不同的GO浓度和不同的旋涂时间来研究石墨烯透明导电膜的性能。随着溶液中GO浓度的降低和旋涂次数的增加,透光率更高。 GO和CCG混合的电性能仅比GO板稳定,这在本研究中进行了讨论,这是由板的堆叠条件引起的。来自GO的还原氧化石墨烯薄膜的电导率低于来自CCG的氧化石墨烯,我们认为这是因为前者的重叠较少(即成膜能力),透射率和薄层电阻分别为56 T%和50千欧/平方

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