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Soft biomimetic tapered nanostructures for large-area antireflective surfaces and SERS sensing

机译:柔软的仿生锥形纳米结构,用于大面积抗反射表面和SERS传感

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We report a facile fabrication method for the fabrication of functional large area nanostructured polymer films using a drop casting technique. Reusable and tapered silicon molds were utilized in the production of functional polymers providing rapid fabrication of the paraboloid nanostructures at the desired structural heights without the requirement of any complex production conditions, such as high temperature or pressure. The fabricated polymer films demonstrate promising qualities in terms of antireflective, hydrophobic and surface enhanced Raman spectroscopy (SERS) features. We achieved up to 92% transmission from the single-side nanostructured polymer films by implementing optimized nanostructure parameters which were determined using a finite difference time domain (FDTD) method prior to production. Large-area nanostructured films were observed to enhance the Raman signal with an enhancement factor of 4,9 x 10~6 compared to bare film, making them potentially suitable as freestanding SERS substrates. The utilized fabrication method with its demonstrated performances and reliable material properties, paves the way for further possibilities in biological, optical, and electronic applications.
机译:我们报告了一种使用滴铸技术制造功能性大面积纳米结构聚合物薄膜的简便制造方法。在功能性聚合物的生产中使用了可重复使用的锥形硅模具,从而以所需的结构高度快速制造抛物面纳米结构,而无需任何复杂的生产条件,例如高温或高压。制成的聚合物薄膜在抗反射,疏水和表面增强拉曼光谱(SERS)功能方面表现出令人鼓舞的品质。通过实施优化的纳米结构参数,我们在生产前通过有限时域(FDTD)方法确定了最佳的纳米结构参数,从而使单面纳米结构聚合物薄膜的透射率达到了92%。与裸膜相比,观察到大面积的纳米结构薄膜可增强拉曼信号,其增强因子为4.9 x 10〜6,这使其有可能适合作为独立的SERS基板。所利用的制造方法以其经证明的性能和可靠的材料性能,为生物,光学和电子应用中的进一步可能性铺平了道路。

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