论文标题

多层薄膜胶卷色散凝胶,用于表面增强的拉曼光谱法

Multilayer Thin-Film Flake Dispersion Gel for Surface-Enhanced Raman Spectroscopy

论文作者

Kumar, Samir, Kanagawa, Misa, Namura, Kyoko, Fukuoka, Takao, Suzuki, Motofumi

论文摘要

Ag纳米棒阵列/介电/镜像结构的多层薄膜是众所周知的,高度敏感的表面增强拉曼散射(SERS)底物,可通过光的干扰增强拉曼散射横截面。但是,使用这些固体底物直接从人皮中提取生物标志物是困难的。为了克服这个问题,我们提出了多层薄膜分散凝胶,通过离心薄膜和羟基乙基纤维素(HEC)凝胶的离心混合。多层薄膜是使用动态倾斜角度沉积技术通过串行双重定位制备的。优化了混合过程以获得约10μm的片状,因此可以保留多层膜的光学特性,并且对人类没有不利影响的风险。使用4,4'Bipyridine(BPY)测试了薄片色散凝胶的SER特征。 BPY分子在几秒钟内通过高度多孔凝胶扩散,产生了重要的SERS信号。多层膜薄片色散凝胶显示出SERS信号比没有多层膜结构的凝胶分散Ag纳米棒阵列好20倍。这些SERS活性薄片色散凝胶可直接在皮肤表面上用于从汗液中收集体液,以进行生物标志物传感。

Ag nanorod arrays/dielectrics/mirror-structured multilayer thin-film are well known, highly sensitive surface-enhanced Raman scattering (SERS) substrates that enhance the Raman scattering cross-section by the interference of light. However, extracting biomarkers directly from human skin using these solid substrates is difficult. To overcome this problem, we propose a multilayer thin-film flake dispersion gel by centrifugal mixing of the multilayer thin-film and hydroxyethyl cellulose (HEC) gel. The multilayer thin-film was prepared by serial bideposition using the dynamic oblique angle deposition technique. The mixing process was optimized to obtain flakes of ~10 μm so that the optical properties of the multilayer film can be preserved, and there is no risk of adverse effects on humans. The SERS features of the flakes dispersion gel were tested using 4, 4'-bipyridine (BPY). The BPY molecules diffused through the highly porous gel within a few seconds, generating significant SERS signals. The multilayer film flakes dispersion gel showed a SERS signal about 20 times better than the gel-dispersed Ag nanorod arrays without a multilayer film structure. These SERS active flakes dispersion gel can be used directly on the skin surface to collect body fluids from sweat, for biomarker sensing.

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