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Raman enhancement in bowtie-shaped aperture-particle hybrid nanostructures fabricated with DNA-assisted lithography

机译:DNA辅助光刻技术制备的蝴蝶结形孔径-颗粒杂化纳米结构的拉曼增强

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摘要

We report on efficient surface-enhanced Raman spectroscopy (SERS) supporting substrates, which are based on deoxyribonucleic acid (DNA)-assisted lithography (DALI) and a layered configuration of materials. In detail, we used nanoscopic DNA origami bowtie templates to form hybrid nanostructures consisting of aligned silver bowtie-shaped particles and apertures of similar shape in a silver film. We hypothesized that this particular geometry could facilitate a four-fold advantage in Raman enhancement compared to common particle-based SERS substrates, and further, we verified these hypotheses experimentally and by finite difference time domain simulations. In summary, our DALI-fabricated hybrid structures suppress the background emission, allow emission predominantly from the areas of high field enhancement, and support additional resonances associated with the nanoscopic apertures. Finally, these nanoapertures also enhance the fields associated with the resonances of the underlying bowtie particles. The versatility and parallel nature of our DNA origami-based nanofabrication scheme and all of the above-mentioned features of the hybrid structures therefore make our optically resonant substrates attractive for various SERS-based applications.
机译:我们报告在有效的表面增强拉曼光谱学(ser)支持基质,是基于脱氧核糖核酸(DNA)资助建设光刻技术(大理)和分层配置材料。折纸领结模板形成的混合组成的纳米结构银保持一致bowtie-shaped粒子和孔径的相似在银膜形状。特定的几何可能促进4倍拉曼增强优势比较常见particle-based ser基质,并进一步,我们通过实验验证这些假设时域有限差分模拟。总结,我们DALI-fabricated混合结构抑制背景发射,允许排放主要地区的高增强,支持更多的共鸣与纳米光阑。最后,这些nanoapertures也提高领域相关的共鸣潜在的领结粒子。我们的DNA折纸工艺并行的本质奈米制造计划和所有的上述特性的混合结构因此让我们的光学共振的基质有吸引力的各种SERS-based应用。

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