材料科学
防反射涂料
纳米结构
光学
宽带
散射
反射率
波长
基质(水族馆)
光电子学
掠入射小角散射
雷
严格耦合波分析
制作
纳米技术
衍射光栅
医学
海洋学
物理
中子散射
替代医学
病理
小角中子散射
地质学
图层(电子)
作者
Seungmuk Ji,Young‐Shik Yun,Jihye Lee,Deok‐Jin Jeon,Namsu Kim,Hyuneui Lim,Jong‐Souk Yeo
标识
DOI:10.1021/acsami.2c02356
摘要
The broadband antireflective (AR) effect for wide incident angles has a significant effect on the photoconversion efficiency of photovoltaics and visibility of large-format display panels. The fabrication of surface nanostructures has continued to attract research interest as an effective way to provide such optical performance. However, the effects of different nanostructure geometries are not fully understood, especially for wide-angle AR effects. In this work, we conduct a systematic analysis of the effect of periodic nanostructures such as nanocones (NCs) and inverted nanocones (INCs) on anti-reflectivity at high angles of incidence (AOIs) in terms of light scattering, guided-mode resonance (GMR), and internal reflections. NCs provide good coupling of light scattering and GMR because of their protruding geometry; hence, reduced reflectance can be obtained in the short wavelength region. Further, NCs exhibit relatively weaker GMR intensities and internal reflections, resulting in low reflectance in the long wavelength region. Therefore, NCs offer a superior broadband AR effect for high AOIs compared with INCs. Based on this analysis, we demonstrate an extremely low average reflectance (5.4%) compared to that of the bare substrate (34.7%) for the entire visible range at an AOI of 75° by fabricating NCs on both sides of the substrate.
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