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Ultra-Easy and Fast Method for Transferring Graphene Grown on Metal Foil

机译:用于在金属箔上生长的石墨烯的超容易和快速的方法

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Growing graphene on a large scale is the first step towards its industrial application. The most widely used large-scale graphene growth method is chemical vapor deposition (CVD) on metal foil. Transferring large-scale graphene without damaging it or degrading its performance is also very important. Generally, techniques for transferring CVD-grown graphene involve metal-foil etching. In this case, the metal etchant can chemically alter the graphene and small amounts of metal residue still remain after etching. These metal residues change the properties of the transferred graphene. In this paper, we demonstrate a new technique for transferring CVD-grown graphene films onto arbitrary substrates using Crystalbond, an off-the-shelf adhesive material. This new method is very simple, easy, and fast. It also solves the aforementioned problems associated with metal etching, by using mechanical exfoliation of graphene via the high adhesive strength of Crystalbond. We transferred a similar to 1cm size piece of graphene, which exhibited reasonable optical and electrical properties, as observed using Raman spectroscopy and field effect transistor (FET) measurements, respectively.
机译:大规模的石墨烯增长是其工业应用的第一步。最广泛使用的大型石墨烯生长方法是金属箔上的化学气相沉积(CVD)。在不损坏的情况下转移大型石墨烯或降低其性能也非常重要。通常,用于转移CVD-生长的石墨烯的技术涉及金属箔蚀刻。在这种情况下,金属蚀刻剂可以化学改变石墨烯,并且在蚀刻之后仍然存在少量金属残留物。这些金属残留物改变转移的石墨烯的性质。在本文中,我们证明了一种用于使用晶片,储物粘合剂材料将CVD生长的石墨烯薄膜转移到任意基板上的新技术。这种新方法非常简单,简单,快速。它还解决了与金属蚀刻相关的上述问题,通过使用晶片的高粘合强度使用石墨烯的机械剥离。我们将类似于1cm大小的石墨烯转移,其表现出合理的光学和电性能,如使用拉曼光谱和场效应晶体管(FET)测量所观察到的。

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