Department of Electrical and Computer Engineering, Rice University, Houston, Texas 77005, USA.
College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, Zhejiang 310058, China.
Nat Nanotechnol. 2016 Jul;11(7):633-8. doi: 10.1038/nnano.2016.44. Epub 2016 Apr 4.
The one-dimensional character of electrons, phonons and excitons in individual single-walled carbon nanotubes leads to extremely anisotropic electronic, thermal and optical properties. However, despite significant efforts to develop ways to produce large-scale architectures of aligned nanotubes, macroscopic manifestations of such properties remain limited. Here, we show that large (>cm(2)) monodomain films of aligned single-walled carbon nanotubes can be prepared using slow vacuum filtration. The produced films are globally aligned within ±1.5° (a nematic order parameter of ∼1) and are highly packed, containing 1 × 10(6) nanotubes in a cross-sectional area of 1 μm(2). The method works for nanotubes synthesized by various methods, and film thickness is controllable from a few nanometres to ∼100 nm. We use the approach to create ideal polarizers in the terahertz frequency range and, by combining the method with recently developed sorting techniques, highly aligned and chirality-enriched nanotube thin-film devices. Semiconductor-enriched devices exhibit polarized light emission and polarization-dependent photocurrent, as well as anisotropic conductivities and transistor action with high on/off ratios.
单个单壁碳纳米管中电子、声子和激子的一维特性导致其具有极其各向异性的电子、热和光学性质。然而,尽管已经付出了很大努力来开发生产大规模取向纳米管结构的方法,但这些性质的宏观表现仍然有限。在这里,我们展示了可以使用缓慢真空过滤来制备大尺寸 (>cm(2)) 的单畴取向单壁碳纳米管膜。所制备的膜在全局范围内具有 ±1.5°(各向异性序参量约为 1)的取向,并且高度堆积,在 1μm(2) 的横截面积中包含 1×10(6) 个纳米管。该方法适用于通过各种方法合成的纳米管,并且膜厚度可从几纳米到 ∼100nm 进行控制。我们使用该方法在太赫兹频率范围内创建理想的起偏器,并且通过将该方法与最近开发的分类技术相结合,制造出高度取向且手性富集的纳米管薄膜器件。半导体富集的器件表现出偏振光发射和偏振相关光电流,以及具有高导通/关断比的各向异性电导率和晶体管作用。