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Antireflective coatings with enhanced adhesion strength

机译:抗反射涂层与增强附着力强度

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The importance of tuning refractive index in a multilayer antireflection coating (ARC) system can not be denied. In practical applications, regulation of refractive index is complex due to limited choice and availability of appropriate materials for the trilayer AR coating assembly. To overcome this issue, we used a single inorganic material, HfO2, for the construction of a trilayer AR light harvesting moth eye, resembling hierarchical nanostructure coatings, for exploring new generation photovoltaics and optoelectronic devices. In the trilayer AR HfO2 (TAR-H) assembly, using a glancing angle deposition technique (GLAD), the dense bottom layer was steadily changed into a spongy middle layer that further changed to a highly porous top layer micmiking a moth eye, reducing the refractive index of the coating from 1.87 to 1.30. The broadband omnidirectional properties of the TAR-H coating, with superior thermal stability and improved scratch resistance, in the visible wavelength range were experimentally demonstrated. The TAR-H coating on FTO and sapphire substrates achieved reflectance of up to <1% in the visible wavelength range.
机译:调优中折射率的重要性多层增透膜(电弧)系统不能否认。监管的折射率是复杂的有限的选择和适当的可用性材料trilayer AR涂层组装。为了克服这个问题,我们使用一个单一的无机材料,HfO2建设trilayer AR光收获蛾眼,像分层纳米结构涂层,为探索新一代光电光电设备。(TAR-H)组装,使用掠射角沉积技术(高兴),密集的底部层是逐渐变成了海绵中间层,进一步改变了一个高度多孔层micmiking蛾眼,减少从1.87折射率的涂层1.30. TAR-H涂层,优越的热稳定和提高抗划伤的可见波长范围是实验演示。蓝宝石基板的反射来实现< 1%,可见波长范围。

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