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A new micromechanical approach for the preparation of graphene nanoplatelets deposited on polyethylene

机译:一种新的微机械方法,用于制备沉积在聚乙烯上的石墨烯纳米孔

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摘要

An advantageous micromechanical technique to deposit large area graphene nanoplatelet (GNP) thin films on a low-density polyethylene substrate is proposed. This method is based on the application of shear-stress and friction forces to a graphite platelets/ethanol paste on the surface of a polymeric substrate; it allows us to obtain a continuous film of superimposed nanoplatelets mainly made of 13-30 graphene layers. X-ray diffraction (XRD), atomic force and transmission electron microscopy (TEM) measurements support the occurrence of a partial exfoliation of the graphite platelets due to shear-stress and friction forces applied during film formation. Scanning electron microscopy (SEM) observations point out that the surface of the polymer is uniformly coated by the overlap of GNPs, and TEM analysis reveals the tendency of the nanoplatelets to align parallel to the interface plane. It has been found that the deposited samples, under white light illumination, exhibit a negative photoconductivity and a linear photoresponse as a function of the applied voltage and the optical power density in the -120. divided by 120 mV and 20.9 divided by 286.2 mW cm(-2) ranges, respectively.
机译:提出了一种在低密度聚乙烯基材上沉积大面积石墨烯纳米片(GNP)薄膜的有利的微机械技术。该方法基于将剪切应力和摩擦力施加到聚合物基材表面上的石墨血小板/乙醇糊中;它允许我们获得主要由13-30个石墨烯层制成的叠加纳米片的连续薄膜。 X射线衍射(XRD),原子力和透射电子显微镜(TEM)测量支持由于在薄膜形成期间施加的剪切应力和摩擦力而导致石墨血小板的部分剥离。扫描电子显微镜(SEM)观察指出,聚合物的表面均匀地通过GNP的重叠均匀涂覆,TEM分析显示纳米孔谱的趋势与界面平面平行对齐。已经发现,在白光照明下,沉积的样品,在-120中施加电压和光学功率密度的函数表现出负光电导性和线性光响应。分别除以120 mV和20.9分别除以286.2 mw cm(-2)范围。

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