Jung Yung Joon, Kar Swastik, Talapatra Saikat, Soldano Caterina, Viswanathan Gunaranjan, Li Xuesong, Yao Zhaoling, Ou Fung Suong, Avadhanula Aditya, Vajtai Robert, Curran Seamus, Nalamasu Omkaram, Ajayan Pulickel M
Department of Mechanical and Industrial Engineering, Northeastern University, Boston, Massachusetts 02115, USA.
Nano Lett. 2006 Mar;6(3):413-8. doi: 10.1021/nl052238x.
We present the fabrication and electrical characterization of a flexible hybrid composite structure using aligned multiwall carbon nanotube arrays in a poly(dimethylsiloxane) (PDMS) matrix. Using lithographically patterned nanotube arrays, one can make these structures at any length scale from submicrometer levels to bulk quantities. The PDMS matrix undergoes excellent conformal filling within the dense nanotube network, giving rise to extremely flexible conducting structures with unique electromechanical properties. We demonstrate its robustness against high stress conditions, under which the composite is found to retain its conducting nature. We also demonstrate that these structures can be utilized directly as flexible field-emission devices. Our devices show some of the best field-enhancement factors and turn-on electric fields reported so far.
我们展示了一种在聚二甲基硅氧烷(PDMS)基质中使用排列的多壁碳纳米管阵列的柔性混合复合结构的制造及其电学特性。利用光刻图案化的纳米管阵列,可以在从亚微米级别到大量的任何长度尺度上制造这些结构。PDMS基质在致密的纳米管网络内实现了出色的保形填充,从而产生具有独特机电性能的极其柔性的导电结构。我们展示了其在高应力条件下的稳健性,发现在这种条件下复合材料仍能保持其导电性质。我们还证明了这些结构可以直接用作柔性场发射器件。我们的器件展现出了迄今为止报道的一些最佳场增强因子和开启电场。