Department of Materials Science & Engineering, Stanford University, Stanford, CA 94305, USA.
Nanoscale. 2013 May 21;5(10):4400-3. doi: 10.1039/c3nr00863k.
Metal nanowire transparent networks are promising replacements to indium tin oxide (ITO) transparent electrodes for optoelectronic devices. While the transparency and sheet resistance are key metrics for transparent electrode performance, independent control of the film light scattering properties is important to developing multifunctional electrodes for improved photovoltaic absorption. Here we show that controlled incorporation of ZnO nanopyramids into a metal nanowire network film affords independent, highly tunable control of the scattering properties (haze) with minimal effects on the transparency and sheet resistance. Varying the zinc oxide/silver nanostructure ratios prior to spray deposition results in sheet resistances, transmission (600 nm), and haze (600 nm) of 6-30 Ω □(-1), 68-86%, and 34-66%, respectively. Incorporation of zinc oxide nanopyramid scattering agents into the conducting nanowire mesh has a negligible effect on mesh connectivity, providing a straightforward method of controlling electrode scattering properties. The decoupling of the film scattering power and electrical characteristics makes these films promising candidates for highly scattering transparent electrodes in optoelectronic devices and can be generalized to other metal nanowire films as well as carbon nanotube transparent electrodes.
金属纳米线透明网络有望替代氧化铟锡(ITO)透明电极,用于光电设备。虽然透明度和方阻是透明电极性能的关键指标,但独立控制薄膜的光散射性质对于开发多功能电极以提高光伏吸收非常重要。在这里,我们展示了通过在金属纳米线网络薄膜中可控地掺入氧化锌纳米金字塔,可以独立地、高度地可调地控制散射性质(雾度),而对透明度和方阻的影响最小。在喷雾沉积之前改变氧化锌/银纳米结构的比例,可以得到方阻、透过率(600nm)和雾度(600nm)分别为 6-30 Ω □(-1)、68-86%和 34-66%。氧化锌纳米金字塔散射剂的掺入对导电纳米线网的网格连接几乎没有影响,这为控制电极散射性质提供了一种简单的方法。薄膜散射能力和电特性的解耦使得这些薄膜成为光电设备中高散射透明电极的有前途的候选材料,并且可以推广到其他金属纳米线薄膜以及碳纳米管透明电极。