Shenzhen Key Laboratory for Advanced Materials, Shenzhen Graduate School , Harbin Institute of Technology , Shenzhen 518055 , P. R. China.
Centre for Programmable Materials, School of Materials Science and Engineering , Nanyang Technological University , Singapore 639798 , Singapore.
Langmuir. 2018 Jul 31;34(30):8898-8903. doi: 10.1021/acs.langmuir.8b01486. Epub 2018 Jul 18.
Highly transparent and superhydrophilic sapphire with surface antireflective subwavelength structures were prepared by wet etching using colloidal monolayer silica masks. The film thicknesses of the silica masks were adjusted by the volume concentrations of polystyrene spheres. The evolution of etching morphologies of sapphire was studied, and antireflective concave pyramid nanoarrays on sapphire substrates were designed by calculation and were then prepared. The transmission and wettability of as-obtained patterned sapphire substrates were also investigated. As for sapphire with optimum surface concave micropyramid arrays, average visible transmittance can reach 91.7%, which is apparently higher than that of flat sapphire (85.5%). Moreover, the concave pyramid arrays can significantly increase the surface hydrophilicity of sapphire, exhibiting a water contact angle of 12.6° compared with 62.7° of flat sapphire. The proposed method can be an excellent strategy for preparing antireflective and self-cleaning concave micropyramid subwavelength structures on sapphire without complicated equipment and expensive raw materials.
采用胶体单层二氧化硅掩模进行湿法刻蚀,制备了具有表面抗反射亚波长结构的高透明超亲水蓝宝石。通过调整聚苯乙烯球的体积浓度来调整二氧化硅掩模的膜厚。研究了蓝宝石的刻蚀形貌演变,并通过计算设计了蓝宝石衬底上的抗反射凹金字塔纳米阵列,然后进行了制备。还研究了所获得的图案化蓝宝石衬底的透光率和润湿性。对于具有最佳表面凹微金字塔阵列的蓝宝石,平均可见光透过率可达到 91.7%,明显高于平坦蓝宝石(85.5%)。此外,凹金字塔阵列可显著提高蓝宝石的表面亲水性,与平坦蓝宝石的 62.7°相比,水接触角为 12.6°。该方法无需复杂的设备和昂贵的原材料,是在蓝宝石上制备抗反射和自清洁凹微金字塔亚波长结构的一种极好策略。