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Fast and controllable fabrication of suspended graphene nanopore devices

机译:悬浮石墨烯纳米孔器件的快速可控制备

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A poly(methyl methacrylate) assisted dry transfer method was developed to transfer graphene microflake onto a suspended SiN chip in an effective and efficient way for further graphene nanopore drilling for DNA analysis. Graphene microflakes can be patterned by e-beam lithography to a designed shape and size on a large scale of a few thousands simultaneously. Subsequently, individual graphene microflakes can be picked up and transferred to a target hole on a suspended SiN membrane with 1μm precision via a site-specific transfer-printing method. Nanopores with different diameters from 3 to 20nm were drilled on the as-transferred graphene membrane in a transmission electron microscope. This method offers a fast and controllable way to fabricate graphene nanopores for DNA analyses.
机译:开发了一种聚(甲基丙烯酸甲酯)辅助的干转移方法,以一种有效的方式将石墨烯微片转移到悬浮的SiN芯片上,以进一步进行石墨烯纳米孔的DNA分析。可以通过电子束光刻将石墨烯微薄片同时图案化为设计的形状和大小,成千上万的大规模。随后,可以通过特定位置的转印方法拾取单个石墨烯微薄片,并以1μm的精度将其转移到悬浮的SiN膜上的目标孔中。在透射电子显微镜中,在转移后的石墨烯膜上钻出直径为3至20nm的纳米孔。该方法提供了一种快速且可控的方法来制造用于DNA分析的石墨烯纳米孔。

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