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The contact resistance RC of “edge-contacted” metal-graphene interfaces is systematically studied. Our experiments demonstrate a reduction of contact resistance by intentional patterning of graphene to create “edge contacts”. The parameter space for different hole patterns in graphene is explored. The contact resistance is reduced from 1518 Ωµm for structures without holes to 456 Ωµm in structures...
Graphene, the “wonder material of the 21st century”, has unleashed a new era of nanoscience and nanotechnology based on two‐dimensional crystals. Its exceptional physical properties imply significant impact on diverse fields ranging from electronics to mechanics to chemistry and biology. In the last few years, significant research is dedicated to the development of scalable graphene production methods...
Graphene is a material with enormous potential for numerous applications. Therefore, significant efforts are dedicated to large‐scale graphene production using a chemical vapor deposition (CVD) technique. In addition, research is directed at developing methods to incorporate graphene in established production technologies and process flows. In this paper, we present a brief review of available CVD...
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