Université de Nantes, CNRS, Institut des Matériaux Jean Rouxel, UMR 6502, 2 rue de la Houssinière BP 32229-44322 Nantes cedex 3, France.
Nanotechnology. 2012 Jul 11;23(27):275603. doi: 10.1088/0957-4484/23/27/275603. Epub 2012 Jun 18.
We report on an efficient strategy for the fabrication of an ultra-long suspended nanowire mesh suitable for nanodevice architectures on a polymer surface. First, nickel nanowires are synthesized directly on a template substrate by magnetron sputtering. Laser interference lithography followed by deep reactive ion etching is used to create the nanograted template substrate constituted of one-dimensional line pattern arrays of 240 nm in periodicity. Ordered alignment of ultra-long nanowires (∼180 nm in diameter) with high fidelity to the template pattern is observed by scanning electron microscopy. The transfer of the pre-defined parallel nanowire array from the template surface to a target polymer substrate for electrical characterization of the system is demonstrated. The electrical behaviour of the nanowire mesh, suspended between two electrodes, was found to be linear, stable, and reproducible. This result suggests that this nanofabrication process will open an efficient way to the design and construction of novel nanodevices.
我们报告了一种高效的策略,用于制造超长长悬纳米线网,适用于聚合物表面上的纳米器件结构。首先,通过磁控溅射直接在模板衬底上合成镍纳米线。激光干涉光刻和深反应离子刻蚀用于创建纳米光栅模板衬底,其由周期性为 240nm 的一维线图案阵列组成。通过扫描电子显微镜观察到超长纳米线(直径约为 180nm)与模板图案的高度保真度的有序排列。通过证明将预定义的平行纳米线阵列从模板表面转移到目标聚合物衬底上来对系统进行电特性表征,实现了这一点。在两个电极之间悬挂的纳米线网的电行为被发现是线性的、稳定的和可重复的。这一结果表明,这种纳米制造工艺将为新型纳米器件的设计和构建开辟一条有效途径。