Mechanical Engineering, School of Engineering and Computer Science, Washington State University, 14204 NE Salmon Creek Avenue, Vancouver, WA, 98686, USA.
Nanoscale Res Lett. 2010 Apr 17;5(6):1072-8. doi: 10.1007/s11671-010-9604-3.
Dielectrophoresis has been used in the controlled deposition of single-walled carbon nanotubes (SWNTs) with the focus on the alignment of nanotube thin films and their applications in the last decade. In this paper, we extend the research from the selective deposition of SWNT thin films to the alignment of small nanotube bundles and individual nanotubes. Electrodes with "teeth"-like patterns are fabricated to study the influence of the electrode width on the deposition and alignment of SWNTs. The entire fabrication process is compatible with optical lithography-based techniques. Therefore, the fabrication cost is low, and the resulting devices are inexpensive. A series of SWNT solutions is prepared with concentrations ranging from 0.0125 to 0.2 mg/ml. The alignment of SWNT thin films, small bundles, and individual nanotubes is achieved under the optimized experimental conditions. The electrical properties of these samples are characterized; the linear current-voltage plots prove that the aligned SWNTs are mainly metallic nanotubes. The microscopy inspection of the samples demonstrates that the alignment of small nanotube bundles and individual nanotubes can only be achieved using narrow electrodes and low-concentration solutions. Our investigation shows that it is possible to deposit a controlled amount of SWNTs in desirable locations using dielectrophoresis.
介电泳已被用于单壁碳纳米管(SWNTs)的可控沉积,其重点是在过去十年中纳米管薄膜的对准及其在各应用中的应用。在本文中,我们将研究范围从 SWNT 薄膜的选择性沉积扩展到小的纳米管束和单根纳米管的对准。制造出具有“齿状”图案的电极,以研究电极宽度对 SWNTs 沉积和对准的影响。整个制造过程与基于光学光刻技术的技术兼容。因此,制造成本低,并且生成的器件价格低廉。制备了一系列浓度范围为 0.0125 至 0.2 mg/ml 的 SWNT 溶液。在优化的实验条件下,实现了 SWNT 薄膜、小束和单根纳米管的对准。对这些样品的电性能进行了表征;线性电流-电压图证明,对准的 SWNTs 主要是金属纳米管。对样品的显微镜检查表明,只有使用窄电极和低浓度溶液才能实现小的纳米管束和单根纳米管的对准。我们的研究表明,使用介电泳可以将一定量的 SWNTs 沉积在所需的位置。