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使用固有微孔聚合物合成的多孔但机械坚固的全无机抗反射涂层

Porous but Mechanically Robust All-Inorganic Antireflective Coatings Synthesized using Polymers of Intrinsic Microporosity.

作者信息

Ji Cheng, Zhang Zhongbo, Omotosho Khalil D, Berman Diana, Lee Byeongdu, Divan Ralu, Guha Supratik, Shevchenko Elena V

机构信息

Pritzker School of Molecular Engineering, University of Chicago, Chicago, Illinois 60637, United States.

Materials Science Division, Argonne National Laboratory, Argonne, Illinois 60439, United States.

出版信息

ACS Nano. 2022 Sep 27;16(9):14754-14764. doi: 10.1021/acsnano.2c05592. Epub 2022 Sep 1.

Abstract

Here, we introduce polymer of intrinsic microporosity 1 (PIM-1) to design single-layer and multilayered all-inorganic antireflective coatings (ARCs) with excellent mechanical properties. Using PIM-1 as a template in sequential infiltration synthesis (SIS), we can fabricate highly uniform, mechanically stable conformal coatings of AlO with porosities of ∼50% and a refractive index of 1.41 compared to 1.76 for nonporous AlO that is perfectly suited for substrates commonly used in high-end optical systems or touch screens (e.g., sapphire, conductive glass, bendable glass, etc.). We show that such films can be used as a single-layer ARC capable of reduction of the Fresnel reflections of sapphire to as low as 0.1% at 500 nm being deposited only on one side of the substrate. We also demonstrate that deposition of the second layer with higher porosity using block copolymers enables the design of graded-index double-layered coatings. AlO structures with just two layers and a total thickness of less than 200 nm are capable of reduction of Fresnel reflections under normal illumination to below 0.5% in a broad spectral range with 0.1% reflection at 700 nm. Additionally, and most importantly, we show that highly porous single-layer and graded-index double-layered ARCs are characterized by high hardness and scratch resistivity. The hardness and the maximum reached load were 7.5 GPa and 13 mN with a scratch depth of about 130 nm, respectively, that is very promising for the structures consisting of two porous AlO layers with 50% and 85% porosities, correspondingly. Such mechanical properties of coatings can also allow their application as protective layers for other optical coatings.

摘要

在此,我们引入固有微孔聚合物1(PIM-1)来设计具有优异机械性能的单层和多层全无机抗反射涂层(ARC)。在顺序浸润合成(SIS)中使用PIM-1作为模板,我们可以制备高度均匀、机械稳定的AlO保形涂层,其孔隙率约为50%,折射率为1.41,相比之下无孔AlO的折射率为1.76,这种涂层非常适合用于高端光学系统或触摸屏中常用的基板(例如蓝宝石、导电玻璃、可弯曲玻璃等)。我们表明,这种薄膜可以用作单层ARC,仅在基板的一侧沉积时,能够将蓝宝石在500 nm处的菲涅耳反射降低至0.1%。我们还证明,使用嵌段共聚物沉积具有更高孔隙率的第二层能够设计渐变折射率双层涂层。仅两层且总厚度小于200 nm的AlO结构能够在正常照明下将宽光谱范围内的菲涅耳反射降低至0.5%以下,在700 nm处的反射率为0.1%。此外且最重要的是,我们表明高度多孔的单层和渐变折射率双层ARC具有高硬度和抗划伤性。硬度和最大加载力分别为7.5 GPa和13 mN,划痕深度约为130 nm,对于由孔隙率分别为50%和85%的两层多孔AlO组成的结构而言,这是非常有前景的。这种涂层的机械性能还使其能够用作其他光学涂层的保护层。

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