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Introducing nanoscaled surface morphology and percolation barrier network into mesoporous silica coatings

机译:将介孔二氧化硅涂层引入纳米尺度的表面形态和渗透屏障网络

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摘要

Mesoporous silica thin films were patterned at the sub-micron scale utilizing the ion hammering effect in order to combine the advantages of mesoporous character and surface morphology, while preserving the interconnected pore system or creating laterally separated porous volumes surrounded by nonpermeable compact zones. Porous silica coatings were prepared by a sol-gel method with an ordered and disordered pore system using micellar templates. A hexagonally ordered Langmuir-Blodgett type monolayer of silica spheres was applied as a mask against Xe+ ion irradiation. The ion energy was chosen according to Monte-Carlo simulations to achieve structures with high lateral contrast between irradiated and unirradiated, i.e., masked areas. The disordered pore system proved to be more resistant against ion bombardment. Although the created surface morphologies were similar, the main character of the pore system could be tailored to be interconnected or separated by controlling the ion fluence. Confocal fluorescence images and ellipsometric porosimetry measurements confirmed that the contribution of transition zone between the intact masked and damaged regions to the porosity is negligible. Furthermore, the majority of the porous volume can be preserved as an interconnected pore system by the application of low ion fluence. By increasing the fluence value, however, separated porous volumes can be created at the expense of the total pore volume.
机译:利用离子锤击效应在亚微米级对介孔二氧化硅薄膜进行构图,以结合介孔特性和表面形态的优点,同时保留互连的孔系统或创建由不可渗透的致密区域围绕的横向分隔的多孔体。通过溶胶-凝胶法,使用胶束模板,用有序和无序的孔系统制备多孔二氧化硅涂层。六边形有序的Langmuir-Blodgett型二氧化硅球单层被用作防止Xe +离子辐射的掩模。根据蒙特卡洛模拟选择离子能量,以实现在辐照和未辐照(即遮蔽区域)之间具有高横向对比度的结构。事实证明,无序的毛孔系统对离子轰击具有更高的抵抗力。尽管产生的表面形态相似,但可以通过控制离子通量来调整孔系统的主要特征,使其相互连接或分离。共焦荧光图像和椭偏孔隙率法测量结果证实,完整的遮盖区域和受损区域之间的过渡区域对孔隙率的影响可忽略不计。此外,通过应用低离子通量,可以将大部分多孔体积保留为相互连接的孔系统。然而,通过增加注量值,可以以总孔体积为代价产生分开的多孔体积。

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