Zou Liping, Li Xiaoguang, Zhang Qinghua, Shen Jun
Shanghai Key Laboratory of Special Artificial Microstructure and Technology, School of Physics Science and Engineering, Tongji University , Shanghai 200092, China.
Langmuir. 2014 Sep 2;30(34):10481-6. doi: 10.1021/la502397e. Epub 2014 Aug 20.
A double-layer broadband antireflective (AR) coating was prepared on glass substrate via sol-gel process using two kinds of acid-catalyzed TEOS-derived silica sols. The relative dense layer with a porosity of ∼10% was obtained from an as-prepared sol, while the porous layer with a porosity of ∼55% was from a modified one with block copolymer (BCP) Pluronic F127 as template which results in abundant ordered mesopores. The two layers give rise to a reasonable refractive index gradient from air to the substrate and thus high transmittance in a wide wavelength range, and both of them have the same tough skeleton despite different porosity, for which each single-layer and the double-layer coatings all behaved well in the mechanical property tests. The high transmittance and the strong ability of resisting abrasion make this coating promising for applications in some harsh conditions. In addition, the preparation is simple, low-cost, time-saving, and flexible for realizing the optical property.
通过溶胶-凝胶法,使用两种酸催化的正硅酸乙酯衍生的硅溶胶,在玻璃基板上制备了双层宽带抗反射(AR)涂层。由制备好的溶胶获得孔隙率约为10%的相对致密层,而孔隙率约为55%的多孔层则来自以嵌段共聚物(BCP)普朗尼克F127为模板的改性溶胶,这导致了大量有序的介孔。这两层形成了从空气到基板的合理折射率梯度,从而在宽波长范围内具有高透射率,并且尽管孔隙率不同,但它们都具有相同的坚韧骨架,因此单层和双层涂层在机械性能测试中均表现良好。高透射率和强大的耐磨能力使这种涂层在一些恶劣条件下的应用前景广阔。此外,该制备方法简单、成本低、省时,并且在实现光学性能方面具有灵活性。