Department of High Frequency Electronics, Technische Universität Darmstadt, Darmstadt, Germany.
Nanotechnology. 2012 Mar 2;23(8):085501. doi: 10.1088/0957-4484/23/8/085501. Epub 2012 Feb 1.
We report a simple method for the micro-nano integration of flexible, vertically aligned multiwalled CNT arrays sandwiched between a top and bottom carbon layer via a porous alumina (Al(2)O(3)) template approach. The electromechanical properties of the flexible CNT arrays have been investigated under mechanical stress conditions. First experiments show highly sensitive piezoresistive sensors with a resistance decrease of up to ∼35% and a spatial resolution of <1 mm. The results indicate that these CNT structures can be utilized for tactile sensing components. They also confirm the feasibility of accessing and utilizing nanoscopic CNT bundles via lithographic processing. The method involves room-temperature processing steps and standard microfabrication techniques.
我们报告了一种简单的方法,用于通过多孔氧化铝(Al2O3)模板方法将顶部和底部碳层之间的柔性、垂直排列的多壁 CNT 阵列进行微纳集成。已经在机械应力条件下研究了柔性 CNT 阵列的机电性能。初步实验表明,具有高达约 35%的电阻降低和<1mm 的空间分辨率的高灵敏度压阻传感器。结果表明,这些 CNT 结构可用于触觉感应元件。它们还证实了通过光刻处理访问和利用纳米级 CNT 束的可行性。该方法涉及室温处理步骤和标准微制造技术。