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蝉翼表面银镜反应制备的黑/银金属微纳结构的光学和表面增强拉曼散射特性

Optical and Surface-Enhanced Raman Scattering Properties of Black and Metallic Silver Micro/Nano Structures Fabricated on Cicada Wings by Silver Mirror Reaction.

机构信息

Nanomaterials and Microdevices Research Center, Osaka Institute of Technology, 5-16-1 Omiya, Asahi-ku, Osaka, 535-8585, Japan.

出版信息

J Nanosci Nanotechnol. 2019 Dec 1;19(12):7853-7858. doi: 10.1166/jnn.2019.16853.

Abstract

Silver was deposited on cicada () wings to fabricate black and metallic silver micro/nano structures on the wings (black-Ag wings and metallic-Ag wings) by the silver mirror reaction. The transparent cicada wings with close-packed nanopillar array structures were used as the substrates based on natural materials. As the silver mirror reaction proceeded, the color of the wing gradually changed from transparent to brown, then to black, and finally to metallic silver. A thin Ag film coated nanopillar array structure is seen in the black-Ag wing. The transmittance and reflectance of the black-Ag wing were nearly 0% and an average of about 4% in the wavelength range of 200-800 nm, respectively. Densely stacked colloidal Ag particles with an average diameter of 155 nm were observed on the surface of the metallic-Ag wing. The surface enhanced Raman scattering (SERS) signal intensities of Rhodamine 6G (R6G) dripped and dried on the black-Ag wing, thin Ag film sputtered on glass slides, and metallic-Ag wing increased in that order. In particular, the SERS signal intensities of R6G on metallic-Ag wing were greater than two orders of magnitude than those on the black-Ag wing and thin Ag film.

摘要

蝉翼表面通过银镜反应沉积银,从而在蝉翼表面构建黑色和金属银微纳结构(黑色 Ag 翼和金属 Ag 翼)。以天然材料紧密排列纳米柱阵列结构的透明蝉翼作为基底。随着银镜反应的进行,翅膀的颜色逐渐从透明变为棕色,然后变为黑色,最后变为金属银。在黑色 Ag 翼中可以看到涂覆有薄 Ag 膜的纳米柱阵列结构。黑色 Ag 翼在 200-800nm 波长范围内的透光率和反射率分别接近 0%和平均约 4%。在金属 Ag 翼的表面观察到密集堆积的平均直径为 155nm 的胶体 Ag 颗粒。在黑色 Ag 翼、溅射在载玻片上的薄 Ag 膜和金属 Ag 翼上滴加并干燥的 Rhodamine 6G(R6G)的表面增强拉曼散射(SERS)信号强度依次增加。特别是,R6G 在金属 Ag 翼上的 SERS 信号强度比黑色 Ag 翼和薄 Ag 膜上的 SERS 信号强度大两个数量级以上。

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