Frontier Research Center, Canon Inc., 3-30-2 Shimomaruko, Ohta-ku, Tokyo 146-8501, Japan.
J Am Chem Soc. 2011 Aug 31;133(34):13539-44. doi: 10.1021/ja204384m. Epub 2011 Aug 4.
Mesoporous titania-silica composite films with highly aligned cylindrical pores are prepared by the sol-gel method using a substrate with structural anisotropy. The strong alignment effect of a rubbing-treated polyimide film on a substrate provides a narrow alignment distribution in the plane of the film regardless of the fast condensation rate of titania precursors. The collapse of the mesostructure upon the surfactant removal is effectively suppressed by the reinforcement of the pore walls with silica by exposing the as-deposited film to a vapor of a silicon alkoxide. The existence of a silica layer on the titania pore wall is proved from the distributions of Ti and Si estimated by the elemental analysis in high resolution electron microscopy. The obtained mesoporous titania-silica composite film exhibits a remarkable birefringence reflecting the highly anisotropic mesoporous structure and the high refractive index of titania that forms the pore wall. The Δn value estimated from the optical retardation and the film thickness is larger than 0.06, which cannot be achieved with the conventional mesoporous silica films with uniaxially aligned mesoporous structure even though the alignment of the pores in the films is perfect. These inorganic films with mesoscopic structural anisotropy will find many applications in the field of optics as phase plates with high thermal/chemical/mechanical stabilities.
具有高度取向柱状孔的介孔二氧化钛-硅复合膜是通过溶胶-凝胶法在具有各向异性结构的基底上制备的。经过摩擦处理的聚酰亚胺膜对基底的强烈取向效应在膜的平面内提供了狭窄的取向分布,而不管钛酸酯前体的快速缩合速率如何。通过将硅烷醇盐蒸气暴露于沉积后的膜,可以有效地抑制介孔结构在去除表面活性剂时的坍塌,从而增强了孔壁的硅来实现。从高分辨率电子显微镜中的元素分析估算的 Ti 和 Si 的分布证明了 TiO2 孔壁上存在二氧化硅层。所获得的介孔二氧化钛-硅复合膜表现出显著的双折射,反映了高度各向异性的介孔结构和形成孔壁的 TiO2 的高折射率。从光学延迟和膜厚估算的 Δn 值大于 0.06,即使膜中孔的取向是完美的,也无法通过具有单轴取向介孔结构的常规介孔二氧化硅膜来实现。这些具有介观结构各向异性的无机膜将在光学领域作为具有高热/化学/机械稳定性的相板得到广泛应用。