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Direct deposition of graphene nanomaterial films on polymer-coated glass by ultrasonic spraying

机译:通过超声喷涂在聚合物涂层玻璃上直接沉积石墨烯纳米材料薄膜

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In this work, suspensions of two types of graphene nanomaterials-graphene nanoflowers (GNFs) and multilayer graphene (MLG) flakes-were ultrasonically sprayed into micrometer-sized droplets to directly form films on glass and methacrylic acid copolymer (MA)-modified glass substrates. Poly(vinylidene fluoride) (PVDF) was added to the suspensions to enhance the structural robustness of films. While PVDF enhanced nanomaterial binding, the MA coating boosted nanomaterial adhesion to the substrate. The films' morphology, adhesion, and electrical properties were investigated. MLG flakes produced highly irregular films, conversely GNFs formed thinner and more uniform layers. In the case of MLG flakes, films on MA-coated glass showed lower resistances compared to those on glass. GNF suspensions sprayed on MA-coated glass resulted in graphene nanostructures embedded in a predominantly dielectric polymer matrix. Thus, in the case of GNFs, films on glass exhibited lower resistances compared to those on MA-coated glass. The approach described herein can be readily extended to create films of other graphene-based materials on a variety of substrates. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,将两种类型的石墨烯纳米材料-石墨烯纳米花(GNF)和多层石墨烯(MLG)薄片的悬浮液超声喷涂到微米大小的液滴中,以在玻璃和甲基丙烯酸共聚物(MA)改性的玻璃基板上直接形成膜。将聚偏二氟乙烯(PVDF)添加到悬浮液中以增强薄膜的结构坚固性。尽管PVDF增强了纳米材料的结合力,但MA涂层却增强了纳米材料对基材的附着力。研究了膜的形态,粘附性和电性能。 MLG薄片产生高度不规则的薄膜,相反,GNF形成了更薄更均匀的层。对于MLG薄片,与玻璃上的膜相比,涂有MA的玻璃上的膜显示出较低的电阻。喷涂在MA涂层玻璃上的GNF悬浮液导致石墨烯纳米结构嵌入主要是介电聚合物基质中。因此,在GNF的情况下,与MA涂覆的玻璃相比,玻璃上的膜表现出较低的电阻。本文所述的方法可以容易地扩展以在各种基板上产生其他基于石墨烯的材料的膜。 (C)2015 Elsevier B.V.保留所有权利。

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