Department of Chemical Engineering , University College London , Torrington Place , London WC1E 7JE , U.K.
Chemical & Process Engineering, Coating & Film Processing , BASF SE , Carl-Bosch-Strasse 38 , Ludwigshafen am Rhein 67056 , Germany.
ACS Appl Mater Interfaces. 2018 Mar 28;10(12):10315-10321. doi: 10.1021/acsami.7b18299. Epub 2018 Mar 15.
Generating mesoporous films with adequate film thickness and refractive index is a common method to achieve amplitude and phase matching in low-cost interference-based antireflective coatings (ARCs). For high-surface-energy materials, pores on the 2-50 nm (i.e., on the subwavelength scale) are subject to capillary condensation by surrounding gas phase water molecules, which hampers their functioning. In this work, we examine the effect of relative humidity on mesoporous ARCs and present a simple method for the preparation of ARCs with robust operation under variable conditions. The materials route is based on the generation of well-defined porous aluminosilicate networks by block copolymer co-assembly with poly(isobutylene)- block-poly(ethylene oxide) and postsynthesis grafting of trichloro(octyl)silane molecules to the pore walls. The functionalized films exhibited a maximum transmittance value of 99.8%, with an average transmittance of 99.1% in the visible wavelength range from 400 to 700 nm. Crucially, the antireflection performance was maintained at high humidity values, with an average transmittance decrease of only 0.2% and maximum values maintained at 99.7%. This compared to maximum and average losses of 3.6 and 2.7%, respectively, for nonfunctionalized reference samples. The ARCs were shown to retain their optical properties within 50 humidity cycles, indicating long-term stability against fluctuating environmental conditions.
生成具有适当膜厚和折射率的介孔膜是在低成本干涉型抗反射涂层(ARC)中实现振幅和相位匹配的常用方法。对于高表面能材料,2-50nm 范围内的孔(即在亚波长尺度上)会被周围气相水分子的毛细冷凝所阻碍,从而影响其功能。在这项工作中,我们研究了相对湿度对介孔 ARC 的影响,并提出了一种简单的方法来制备在不同条件下具有稳健性能的 ARC。该材料途径基于通过嵌段共聚物共组装与聚异丁烯-嵌段-聚氧化乙烯生成具有明确定义的多孔铝硅酸盐网络,并在后合成中将三氯(辛基)硅烷分子接枝到孔壁上。功能化的薄膜表现出 99.8%的最大透过率值,在 400nm 至 700nm 的可见光波长范围内平均透过率为 99.1%。至关重要的是,在高湿度值下,抗反射性能得以保持,平均透过率仅下降 0.2%,最大透过率保持在 99.7%。相比之下,未功能化参考样品的最大和平均损耗分别为 3.6%和 2.7%。ARC 被证明在 50 个湿度循环内保留其光学性能,表明其对波动环境条件具有长期稳定性。