Kosiorek Adam, Kandulski Witold, Glaczynska Hanna, Giersig Michael
Center of Advanced European Studies and Research (CAESAR), Ludwig-Erhard-Allee 2, 53175 Bonn, Germany.
Small. 2005 Apr;1(4):439-44. doi: 10.1002/smll.200400099.
The application of shadow nanosphere lithography for the preparation of large-area, two-dimensional, metallic nanostructures of different shape is described. Through changing the mask morphology by temperature processing and varying the evaporation conditions, particles with morphologies such as rings, rods, and dots have been produced. This process allows outstanding control of the size and morphology of the particles. The efficient technique is shown to scale down the size of metallic nanoparticles from 200 to 30 nm, while preserving the original nanosphere spacing and order. The 150-nm-diameter Fe rings produced by this method show ferromagnetic behavior, which was predicted by theoretical simulation. All the experimental results were confirmed by computer simulations, which also showed the possibility of creating periodic arrays of any other geometrical shape.
描述了利用阴影纳米球光刻技术制备大面积、二维、不同形状金属纳米结构的方法。通过温度处理改变掩膜形态并改变蒸发条件,制备出了具有环形、棒状和点状等形态的颗粒。该工艺能够出色地控制颗粒的尺寸和形态。结果表明,这种高效技术可将金属纳米颗粒的尺寸从200纳米缩小至30纳米,同时保持原始纳米球的间距和有序性。通过该方法制备的直径为150纳米的铁环表现出铁磁行为,这与理论模拟预测相符。所有实验结果均得到计算机模拟的证实,计算机模拟还表明了创建任何其他几何形状周期性阵列的可能性。