State Key Laboratory of Bioelectronics (Chien-Shiung Wu Laboratory), School of Biological Science and Medical Engineering, Southeast University, Nanjing, People's Republic of China.
Nanotechnology. 2010 Mar 5;21(9):095303. doi: 10.1088/0957-4484/21/9/095303. Epub 2010 Feb 3.
We develop a simple and scalable method based on oriented polymer nanofiber films for the parallel assembly and transfer of nanowires at high density. Nanowires dispersed in solution are aligned and selectively deposited at the central space of parallel nanochannels formed by the well-oriented nanofibers as a result of evaporation-induced flow and capillarity. A general contact printing method is used to realize the transfer of the nanowires from the donor nanofiber film to a receiver substrate. The mechanism, which involves ordered alignment of nanowires on oriented polymer nanofiber films, is also explored with an evaporation model of cylindrical droplets. The simplicity of the assembly and transfer, and the facile fabrication of large-area well-oriented nanofiber films, make the present method promising for the application of nanowires, especially for the disordered nanowires synthesized by solution chemistry.
我们开发了一种简单且可扩展的方法,基于定向聚合物纳米纤维膜,用于在高密度下平行组装和转移纳米线。分散在溶液中的纳米线在蒸发诱导流和毛细作用的作用下,在由取向良好的纳米纤维形成的平行纳米通道的中央空间中被对齐并选择性地沉积。使用一般的接触印刷方法将纳米线从供体纳米纤维膜转移到接收基底上。通过圆柱滴的蒸发模型,还探索了涉及在定向聚合物纳米纤维膜上有序排列纳米线的机制。组装和转移的简单性,以及大面积良好取向纳米纤维膜的易于制造,使得该方法有望应用于纳米线,特别是用于溶液化学合成的无序纳米线。