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Fabricating complex three-dimensional nanostructures with high-resolution conformable phase masks

机译:使用高分辨率适形相掩模制造复杂的三维纳米结构

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摘要

High-resolution, conformable phase masks provide a means to fabricate, in an experimentally simple manner, classes of 3D nanostructures that are technologically important but difficult to generate in other ways. In this approach, light passing through a phase mask that has features of relief comparable in dimension to the wavelength generates a 3D distribution of intensity that exposes a photopolymer film throughout its thickness. Developing this polymer yields a structure in the geometry of the intensity distribution, with feature sizes as small as 50 nm. Rigorous coupled-wave analysis reveals the fundamental aspects of the optics associated with this method; a broad-range 3D nanostructures patterned with it demonstrates its technical capabilities. A nanoporous filter element built inside a microfluidic channel represents one example of the many types of functional devices that can be constructed.
机译:高分辨率,适形的相位掩模提供了一种以实验上简单的方式制造3D纳米结构类别的方法,这些类别在技术上很重要,但很难以其他方式生成。在这种方法中,穿过具有在尺寸上与波长可比的浮雕特征的相掩模的光产生强度的3D分布,该3D分布使光敏聚合物膜在其整个厚度上曝光。对这种聚合物进行显影后,会在强度分布的几何结构中产生结构,特征尺寸小至50 nm。严格的耦合波分析揭示了与该方法相关的光学原理。图案丰富的3D纳米结构展示了其技术能力。内置在微流体通道内的纳米孔滤芯代表了可以构建的多种功能设备的一个例子。

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