防反射涂料
材料科学
双层
折射率
制作
纳米孔
光电子学
菲涅耳方程
光学
光学涂层
多孔性
纳米结构
纳米技术
薄膜
波长
微型多孔材料
反射率
宽带
电介质
全向天线
反射(计算机编程)
涂层
聚合物
氟化镁
镜面反射
透射率
反射损耗
消色差透镜
偏振器
作者
Jing Xu,Cheng Ji,Ahsan Ullah,Ralu Divan,Fred Woodall,L.B. Moses,Carlo Kosik Williams,Jaymin Amin,Anika T. Promee,Diana Berman,Elena V. Shevchenko,Supratik Guha
标识
DOI:10.1021/acsanm.5c04864
摘要
Antireflective coatings (ARCs) are thin films engineered to reduce the light reflection. Delivering broadband, wide-angle performance is essential for photovoltaics, imaging, and sensing, yet truly omnidirectional antireflection remains difficult due to angle-dependent optical paths and a narrow palette of suitable refractive indices. Here, we systematically investigate an emerging class of multilayer inorganic ARCs based on conformally coated nanoporous alumina templated by intrinsically microporous polymers and block copolymers. We establish a design framework that maps thickness reflectance relationships to identify thickness pairs, minimizing reflection across wavelength and incidence angle. We show that deliberately separating the local reflectance minima of the top and bottom layers in bilayer nanostructures broadens the antireflective bandwidth and angular range. We show that 235 nm single-side bilayer porous alumina nanostructures achieves under 2% reflectance from 380–750 nm for incidence angles up to 45° with less than 0.6% reflectance for incidence angles under 20°. The approach is readily extensible to additional layers or materials with refractive indices tuned via templated nanoporosity and composition, enabling practical, etch-free ARC fabrication without HF or fluorinated precursors and advancing straightforward design of broadband, wide-angle (quasi-omnidirectional) ARCs for next-generation optical systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI