School of Materials Engineering and Birck Nanotechnology Center, Purdue University, West Lafayette, Indiana 47907, United States.
ACS Nano. 2012 Jul 24;6(7):6407-15. doi: 10.1021/nn301978x. Epub 2012 Jul 2.
We describe a new catalyst for group IV nanowire heterostructures, based on alloying Ag with Au, that combines the ability to control catalyst phase and nanowire structure with good environmental stability. Compared to other alloy catalysts, we show a higher oxidation resistance of AgAu and more consistent crystal shapes and catalyst/nanowire orientation relationships during growth. We show that AgAu catalysts are also stable against diffusion during growth, making them capable of forming long nanowires with uniform diameters. Furthermore, we demonstrate the growth of compositionally abrupt Si/Ge heterojunctions with good reproducibility and yield, switching individual nanowires between vapor-liquid-solid and vapor-solid-solid growth to optimize growth rates by control of the catalyst state. The stability and properties of AgAu catalysts potentially open up a promising and practical route toward control of group IV heterostructure nanowires.
我们描述了一种新的 IV 族纳米线异质结构催化剂,基于 Ag 与 Au 的合金化,它结合了控制催化剂相和纳米线结构的能力以及良好的环境稳定性。与其他合金催化剂相比,我们展示了 AgAu 更高的抗氧化能力,以及在生长过程中更一致的晶体形状和催化剂/纳米线取向关系。我们还表明,AgAu 催化剂在生长过程中也能抵抗扩散,从而能够形成具有均匀直径的长纳米线。此外,我们展示了具有良好重现性和产量的成分突然 Si/Ge 异质结的生长,通过控制催化剂状态在气相-液相-固相和气相-固相之间切换单个纳米线,以优化生长速率。AgAu 催化剂的稳定性和性能为控制 IV 族异质结构纳米线开辟了一条有前途和实用的途径。