Division of Materials Science and Engineering, Hanyang University, Seoul 133-791, Korea.
ACS Appl Mater Interfaces. 2012 Aug;4(8):3910-5. doi: 10.1021/am3007142. Epub 2012 Jul 18.
Here we describe a simple, versatile technique to produce large-scale arrays of highly ordered ZnO nanorods. Patterning of three distinct ZnO crystal morphologies is demonstrated through use of different ZnO seed layers. Array formation is accomplished through a simple variation on nanosphere lithography that imprints a thickness variation across a PMMA mask layer. The area of exposed seed layer is controlled through etching time in an oxygen plasma. Subsequent hydrothermal growth from the patterned seed layer produces high-quality ZnO crystals in uniform arrays. The high uniformity of the patterned array is shown to induce a high contact angle hydrophobic state even without the need for chemical modification of the ZnO surface. This technique provides a straightforward way to integrate the optical and electrical properties of high-quality ZnO nanorods with the tunable fluidic properties at the surface of well-ordered arrays.
在这里,我们描述了一种简单、通用的技术,可用于大规模制备高度有序的 ZnO 纳米棒阵列。通过使用不同的 ZnO 种子层,展示了三种不同 ZnO 晶体形态的图案化。通过在 PMMA 掩模层上压印厚度变化的简单纳米球光刻变体来完成阵列的形成。通过在氧气等离子体中蚀刻时间来控制暴露的种子层的面积。随后从图案化的种子层进行水热生长,可在均匀的阵列中生成高质量的 ZnO 晶体。即使不需要对 ZnO 表面进行化学修饰,图案化阵列的高度均匀性也显示出诱导高接触角疏水状态的能力。该技术为将高质量 ZnO 纳米棒的光学和电学性能与有序阵列表面的可调流体制备集成提供了一种简单的方法。