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Templated fabrication of periodic arrays of metallic and silicon nanorings with complex nanostructures

机译:具有复杂纳米结构的金属和硅纳米环的周期性阵列的模板化制造

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摘要

Here we report a scalable colloidal templating approach for fabricating periodic arrays of metallic and silicon nanorings with complex nanostructures. Non-close-packed monolayer silica colloidal crystal prepared by a simple spin-coating technology is first used as template for making periodic arrays of mushroom-like composite nanostructures consisting of silica spherical caps and polymer stems. Subsequent metal sputtering and reactive ion etching lead to the formation of ordered asymmetric nickel nanorings which can be further utilized as etching masks for patterning periodic arrays of symmetric silicon nanorings. Moreover, periodic arrays of metallic and silicon concentric double nanorings can be fabricated by using the asymmetric nickel nanorings as templates. We have also demonstrated that gold concentric double nanorings show strong surface-enhanced Raman scattering (SERS) with a SERS enhancement factor of similar to 9.5 x 10(7) from adsorbed benzenethiol molecules. The SERS enhancement and the electric field amplitude distribution surrounding gold concentric double nanorings have been calculated by using finite element electromagnetic modeling. This new colloidal templating technique is compatible with standard microfabrication and enables wafer-scale production of a variety of periodic nanorings with hierarchical structures that could find important technological applications in plasmonic and magnetic devices.
机译:在这里,我们报告了一种可伸缩的胶体模板化方法,用于制造具有复杂纳米结构的金属和硅纳米环的周期性阵列。通过简单的旋涂技术制备的非密排单层二氧化硅胶体晶体首先被用作模板,以制备由二氧化硅球形帽和聚合物杆组成的蘑菇状复合纳米结构的周期性阵列。随后的金属溅射和反应性离子蚀刻导致形成有序的不对称镍纳米环,其可以进一步用作用于对对称硅纳米环的周期性阵列进行图案化的蚀刻掩模。此外,可以通过使用不对称镍纳米环作为模板来制造金属和硅同心双纳米环的周期性阵列。我们还证明,金同心双纳米环表现出很强的表面增强拉曼散射(SERS),其SERS增强因子与被吸附的苯硫醇分子的9.5 x 10(7)相似。利用有限元电磁模型计算了金同心双纳米环周围的SERS增强和电场幅度分布。这项新的胶体模板技术与标准的微细加工工艺兼容,并且可以晶圆级生产具有分层结构的各种周期性纳米环,这些环形纳米环可以在等离子和磁性设备中找到重要的技术应用。

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