Kang Seong Jun, Kocabas Coskun, Kim Hoon-Sik, Cao Qing, Meitl Matthew A, Khang Dahl-Young, Rogers John A
Department of Materials Science and Engineering, University of Illinois, Urbana-Champaign, Illinois, USA.
Nano Lett. 2007 Nov;7(11):3343-8. doi: 10.1021/nl071596s. Epub 2007 Oct 13.
We developed means to form multilayer superstructures of large collections of single-walled carbon nanotubes (SWNTs) configured in horizontally aligned arrays, random networks, and complex geometries of arrays and networks on a wide range of substrates. The approach involves guided growth of SWNTs on crystalline and amorphous substrates followed by sequential, multiple step transfer of the resulting collections of tubes to target substrates, such as high-k thin dielectrics on silicon wafers, transparent plates of glass, cylindrical tubes and other curved surfaces, and thin, flexible sheets of plastic. Electrical measurements on dense, bilayer superstructures, including crossbars, random networks, and aligned arrays on networks of SWNTs reveal some important characteristics of representative systems. These and other layouts of SWNTs might find applications not only in electronics but also in areas such as optoelectronics, sensors, nanomechanical systems, and microfluidics.
我们开发了多种方法,用于在各种衬底上形成由大量单壁碳纳米管(SWNTs)构成的多层超结构,这些碳纳米管可配置成水平排列阵列、随机网络以及阵列与网络的复杂几何形状。该方法包括在晶体和非晶体衬底上引导SWNTs生长,然后将所得的碳纳米管集合依次进行多步转移至目标衬底,如硅片上的高k薄电介质、玻璃透明板、圆柱形管和其他曲面,以及薄的柔性塑料片。对密集的双层超结构进行电学测量,包括SWNTs网络上的交叉线、随机网络和排列阵列,揭示了代表性系统的一些重要特性。这些以及其他SWNTs布局不仅可能在电子学领域找到应用,还可能在光电子学、传感器、纳米机械系统和微流体等领域找到应用。