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Three-dimensional patterning and morphological control of porous nanomaterials by gray-scale direct imprinting

机译:灰度直接压印法对多孔纳米材料进行三维构图和形貌控制

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摘要

We present a method for direct three-dimensional (3D) patterning of porous nanomaterials through the application of a premastered and reusable gray-scale stamp. Four classes of 3D nanostructures are demonstrated for the first time in porous media: gradient profiles, digital patterns, curves and lens shapes, and sharp features including v-grooves, nano-pits, and ‘cookie-cutter’ particles. Further, we demonstrate this technique enables morphological tuning and direct tailoring of nanomaterial properties, including porosity, average pore size, dielectric constant, and plasmonic response. This work opens a rapid and low-cost route for fabricating novel nanostructures and devices utilizing porous nanomaterials, with promising applications spanning diffractive and plasmonic sensing, holography, micro- and transformation optics, and drug delivery and imaging.
机译:我们提出了一种通过应用预先掌握且可重复使用的灰度图章对多孔纳米材料进行直接三维(3D)图案化的方法。首次在多孔介质中展示了四类3D纳米结构:梯度轮廓,数字图案,曲线和透镜形状,以及包括v型槽,纳米凹坑和“曲奇”颗粒的鲜明特征。此外,我们证明了该技术能够对纳米材料的性质进行形态调整和直接调整,包括孔隙率,平均孔径,介电常数和等离子体响应。这项工作为利用多孔纳米材料制造新颖的纳米结构和器件开辟了一条快速而低成本的途径,其广阔的应用领域涉及衍射和等离子体传感,全息术,微光学和变换光学以及药物递送和成像。

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