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Dependence of the optical and structural properties of ZnO:Al nanostructured layers deposited electrochemically on seeding multilayer stack substrates

机译:ZnO:Al纳米结构性质的光学和结构性能在播种多层堆叠基板上沉积电化学沉积的依赖性层

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We report studies on the optical and structural properties of nanostructured ZnO layers doped with Al (ZnO NW) electrochemically grown on conductive substrates, namely, ZnO:Al/Ag/ZnO:Al multilayer stack structures deposited on glass substrates. Multilayer transparent conductive stack structures with different thickness of the middle Ag film (10 nm, 16 nm and 20 nm) with plasmonic properties were prepared by magnetron sputtering of ZnO:Al and Ag targets. Additionally, a seeding stack annealed at 180 °C for 50 min was prepared in order to study the influence of the seeding stacks properties - resistivity and structure, on the optical and structural characteristics of the electrochemically-grown ZnO layers. A correlation was observed between the surface roughness and the diffuse reflection and the haze ratio in reflection. The results are discussed in terms of the influence of the size of the Ag grains and their distribution in the middle Ag film in the seeding stacks on the nucleation and growth of ZnO NW. The ZnO NW layers exhibited higher values of the diffuse reflection in the 400 - 1100 nm spectral range; they can be applied as rear contacts of thin films solar cells thus increasing the light trapping.
机译:我们报告了掺杂在导电基材上电化学生长的Al(ZnO NW)的纳米结构ZnO层的光学和结构性能研究,即ZnO:Al / Ag / ZnO:Al多层叠层结构沉积在玻璃基板上。通过ZnO:Al和Ag靶的磁控溅射制备具有不同厚度的多层透明导电叠层具有不同厚度的中间Ag膜(10nm,16nm和20nm)。另外,制备在180℃下退火50分钟的播种堆,以研究播种堆性能 - 电阻率和结构的影响,在电化学生长的ZnO层的光学和结构特征上。在表面粗糙度和漫反射和反射中的雾度比之间观察到相关性。结果是在播种堆中的ag粒子中的Ag粒度的尺寸和它们在ZnO NW的成核中的中间Ag膜中的分布的影响而讨论的结果。 ZnO NW层在400-1100nm光谱范围内表现出较高的漫反射值;它们可以作为薄膜太阳能电池的后触点应用,从而增加光捕获。

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