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Three-Dimensional Metal-Oxide Nanohelix Arrays Fabricated by Oblique Angle Deposition: Fabrication Properties and Applications

机译:斜角沉积制备三维金属氧化物纳米螺旋阵列:制备性能和应用

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摘要

Three-dimensional (3D) nanostructured thin films have attracted great attention due to their novel physical, optical, and chemical properties, providing tremendous possibilities for future multifunctional systems and for exploring new physical phenomena. Among various techniques to fabricate 3D nanostructures, oblique angle deposition (OAD) is a very promising method for producing arrays of a variety of 3D nanostructures with excellent controllability, reproducibility, low cost, and compatibility with modern micro-electronic processes. This article presents a comprehensive overview of the principle of OAD, and unique structural and optical properties of OAD-fabricated thin films including excellent crystallinity, accurate tunability of refractive indices, and strong light scattering effect which can be utilized to remarkably enhance performances of various systems such as antireflection coatings, optical filters, photoelectrodes for solar-energy-harvesting cells, and sensing layers for various sensors.
机译:三维(3D)纳米结构薄膜由于其新颖的物理,光学和化学特性而备受关注,为未来的多功能系统和探索新的物理现象提供了巨大的可能性。在制造3D纳米结构的各种技术中,倾斜角沉积(OAD)是一种非常有希望的方法,用于生产具有出色的可控制性,可重复性,低成本以及与现代微电子工艺兼容的各种3D纳米结构的阵列。本文全面介绍了OAD的原理,以及OAD制成的薄膜的独特结构和光学特性,包括出色的结晶度,准确的折射率可调性和强大的光散射效果,可用来显着提高各种系统的性能。例如抗反射涂层,滤光片,用于太阳能采集电池的光电极以及用于各种传感器的传感层。

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