Levitsky Igor A, Kanelos Peter T, Woodbury Destiny S, Euler William B
Department of Chemistry, University of Rhode Island, 51 Lower College Road, Kingston, RI 02881, USA.
J Phys Chem B. 2006 May 18;110(19):9421-5. doi: 10.1021/jp0606154.
A bilayer composite of single walled carbon nanotubes (SWNTs) deposited onto Nafion exhibits substantial mechanical motion upon exposure to visible or near-infrared light. The magnitude of the actuation parallels the absorption spectrum of the SWNTs in the near-infrared, but the actuation diminishes in the visible and disappears in the UV portions of the spectrum. In the near-infrared region, the photoactuation is linear with respect to the light intensity. The photoactuation also appears to be associated with a photocurrent across the nanotube/Nafion interface. The proposed mechanism for the actuation is that band bending of the semiconducting SWNTs induces polarization of mobile hydrogen ions at the Nafion interface, which then causes swelling of the polymer.
沉积在纳滤膜上的单壁碳纳米管(SWNTs)双层复合材料在暴露于可见光或近红外光时会产生显著的机械运动。这种驱动的幅度与SWNTs在近红外区域的吸收光谱平行,但在可见光区域驱动减弱,在光谱的紫外部分则消失。在近红外区域,光驱动与光强度呈线性关系。光驱动似乎还与跨纳米管/纳滤膜界面的光电流有关。提出的驱动机制是,半导体SWNTs的能带弯曲会在纳滤膜界面诱导移动氢离子的极化,进而导致聚合物膨胀。