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PLASMONIC DEVICE, METHOD OF MANUFACTURING A PLASMONIC DEVICE AND METHOD OF ANALYSIS USING A PLASMONIC DEVICE

机译:等离子设备,等离子设备的制造方法和使用等离子设备的分析方法

摘要

A plasmonic device is disclosed, the plasmonic device having a base substrate and an electrically conductive film formed on the base substrate. The base substrate has a reference upper surface and an arrangement of chiral nanostructures formed in relief from the reference upper surface. Each chiral nanostructure has a nanostructure upper surface which is disposed at a distance of at least 30 nm from the reference upper surface in a thickness direction. The electrically conductive film is formed on the nanostructure upper surface of each chiral nanostructure and on at least part of the reference upper surface of the base substrate. Also disclosed is a method of analysis of a biological material using the plasmonic device, by depositing the biological material onto the plasmonic device and irradiating the plasmonic device and the biological material with electromagnetic radiation. The arrangement of chiral nanostructures and electrically conductive film generates a superchiral electromagnetic field, the effect of the presence of the biological material on the superchiral electromagnetic field then being detected.
机译:公开了一种等离子体装置,该等离子体装置具有基础基板和形成在基础基板上的导电膜。基础衬底具有参考上表面和从参考上表面浮雕形成的手性纳米结构的布置。每个手性纳米结构具有纳米结构上表面,该纳米结构上表面在厚度方向上与参考上表面相距至少30nm。导电膜形成在每个手性纳米结构的纳米结构上表面上以及基础衬底的参考上表面的至少一部分上。还公开了一种通过使用等离子装置对生物材料进行分析的方法,该方法是将生物材料沉积到等离子装置上,并用电磁辐射照射等离子装置和生物材料。手性纳米结构和导电膜的排列产生超手性电磁场,然后检测生物材料的存在对超手性电磁场的影响。

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