Abstract
Abstract
A highly sensitive surface-enhanced Raman spectroscopy (SERS) film was fabricated based on anodic aluminum oxide template and Ag coating techniques. The array of alumina nanowires of ∼5 μm length and 26 nm thickness was fabricated and then made collapse to build a micro-scale funnel array, where each cell consists of hundreds of nanowires. Ag film was deposited on the nanowire structure by thermal evaporation. Due to numerous tapered nanogaps and efficient illumination of incident light in the micro-funnel structures, Raman signal enhancement factor (E.F.) as high as ∼1.8 × 107 could be obtained at 785 nm. The SERS film functionalized by 1-propanethiol was used for benzene gas detection, where the sensitivity of <0.3 ppm (3-σ) was realized within 120 s. This nanostructure is expected to be widely used for highly sensitive chemical and bio-sensors and have higher E.F. when the morphology is optimized further.
Funder
Korea Research Institute for defense Technology planning and advancement
National Research Foundation of Korea
Gwangju Institute of Science and Technology
Subject
General Physics and Astronomy,General Engineering
Cited by
2 articles.
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