Chemistry Division, U.S. Naval Research Laboratory, Code 6177, Washington, DC 20375, USA.
Science. 2010 Jun 11;328(5984):1373-6. doi: 10.1126/science.1188119.
The reduced form of graphene oxide (GO) is an attractive alternative to graphene for producing large-scale flexible conductors and for creating devices that require an electronic gap. We report on a means to tune the topographical and electrical properties of reduced GO (rGO) with nanoscopic resolution by local thermal reduction of GO with a heated atomic force microscope tip. The rGO regions are up to four orders of magnitude more conductive than pristine GO. No sign of tip wear or sample tearing was observed. Variably conductive nanoribbons with dimensions down to 12 nanometers could be produced in oxidized epitaxial graphene films in a single step that is clean, rapid, and reliable.
还原氧化石墨烯(GO)是一种很有吸引力的替代石墨烯的材料,可用于制造大规模的柔性导体,并用于制造需要电子间隙的器件。我们报告了一种通过加热原子力显微镜探针对 GO 进行局部热还原来调整还原氧化石墨烯(rGO)的形貌和电学性质的方法,从而实现纳米级分辨率的调控。还原后的 rGO 区域的导电性比原始 GO 高出四个数量级。在实验中,没有观察到针尖磨损或样品撕裂的迹象。在单个清洁、快速和可靠的步骤中,可以在氧化外延石墨烯薄膜中制备尺寸低至 12 纳米的可变导电纳米带。