Dual‐Electromagnetic Field Enhancements through Suspended Metal/Dielectric/Metal Nanostructures and Plastic Phthalates Detection in Child Urine

材料科学 等离子体子 电介质 纳米结构 表面等离子共振 拉曼散射 表面等离子体子 光电子学 基质(水族馆) 纳米技术 纳米颗粒 拉曼光谱 光学 海洋学 物理 地质学
作者
Junzheng Hu,Huikang Yu,Guangxu Su,Boxiang Song,Jie Wang,Zhenxing Wu,Peng Zhan,Fanxin Liu,Wei Wu,Zhenlin Wang
出处
期刊:Advanced Optical Materials [Wiley]
卷期号:8 (2) 被引量:12
标识
DOI:10.1002/adom.201901305
摘要

Abstract Plasmonic nanostructures exhibit intriguing optical properties due to spectrally selective plasmon resonance and thus have broad applications, including biochemical sensing and photoelectric detections. However, excited plasmons are often strongly influenced by the substrates supporting the metallic nanostructures, which not only weakens the intrinsic plasmon coupling effect, but also results in a great reduction of optical near‐field enhancement. Here, a plasmonic nanostructure combining collapsible Au‐nanofingers with selective‐etching that enables Au to be suspended is demonstrated, thus avoiding the undesirable influence of the substrates on the local near‐field distribution and forming symmetric electromagnetic‐field enhancements at both the top and bottom surfaces. The polymer support of the Au‐nanofingers is selectively etched by oxygen plasma, while the Au‐cap retains its original size. After an ultrathin dielectric coating is applied on the Au‐nanofingers, suspended Au‐caps with extremely small dielectric gaps are formed via the collapse of neighboring Au‐nanofingers by exposing them to ethanol. These nanostructures can provide a surface‐enhanced Raman scattering (SERS) enhancement of up to ≈10 9 , which is nearly twice that in the nonsuspended system. As a highly active SERS substrate, the label‐free detection of low‐concentration harmful plastic phthalates in a child's urine without any pretreatment is successfully demonstrated, which suggests that this method is suitable for medical prediagnosis.

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