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Antireflection silicon structures with hydrophobic property fabricated by three-beam laser interference

机译:通过三光束激光干涉制备的具有疏水性的抗反射硅结构

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摘要

This paper demonstrates antireflective structures on silicon wafer surfaces with hydrophobic property fabricated by three-beam laser interference. In this work, a three-beam laser interference system was set up to generate periodic micro-nano hole structures with hexagonal distributions. Compared with the existing technologies, the array of hexagonally-distributed hole structures fabricated by three-beam laser interference reveals a design guideline to achieve considerably low solar-weighted reflectance (SWR) in the wavelength range of 300-780 nm. The resulting periodic hexagonally-distributed hole structures have shown extremely low SWR (1.86%) and relatively large contact angle (140°) providing with a self-cleaning capability on the solar cell surface.
机译:本文演示了通过三光束激光干涉在硅晶片表面上具有疏水特性的抗反射结构。在这项工作中,建立了三束激光干涉系统,以生成具有六边形分布的周期性微纳米孔结构。与现有技术相比,通过三光束激光干涉制造的六边形分布孔结构阵列揭示了在300-780 nm波长范围内实现相当低的太阳加权反射率(SWR)的设计准则。所得的周期性六边形分布的孔结构显示出极低的驻波比(1.86%)和相对较大的接触角(140°),在太阳能电池表面具有自清洁能力。

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