Applied Nano Technology and Science Laboratory, Department of Mechanical Engineering, KAIST, Yusong-Gu, Daejeon, Korea.
Langmuir. 2012 Mar 13;28(10):4787-92. doi: 10.1021/la203781x. Epub 2011 Dec 21.
In this article, we introduce fully digital selective ZnO nanowire array growth on inkjet-printed seed patterning. Through proper natural convection suppression during hydrothermal growth, successful ZnO nanowire local growth can be achieved. Without any need for photolithographic processing or stamp preparation, the nanowire growth location can be easily modified when the inkjet printing process is integrated with a CAD (computer-aided design) system to allow a high degree of freedom when the design needs to be changed. The current proposed process is very fast, low-cost, environmentally benign, and low-temperature. Therefore, it can be applied to a flexible plastic substrate and scaled up for larger substrates for mass production or roll-to-roll processing.
在本文中,我们介绍了在喷墨打印种子图案上完全数字化选择性 ZnO 纳米线阵列生长。通过在水热生长过程中适当抑制自然对流,可以实现 ZnO 纳米线的局部生长。在喷墨打印工艺与 CAD(计算机辅助设计)系统集成时,无需光刻处理或模板制备,纳米线生长位置可以很容易地进行修改,从而在设计需要更改时具有高度的自由度。所提出的工艺速度快、成本低、对环境友好且低温。因此,它可以应用于柔性塑料基板,并扩展到大基板以进行大规模生产或卷对卷处理。