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Optical Properties of Silver/Gold Nanostructures Fabricated by Shadowing Growth and Their Sensing Applications

机译:阴影生长法制备的银/金纳米结构的光学性质及其传感应用

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Various Ag and Au nanostructured films such as Ag nanoparticle (NP) films, Au NP films, and Au NP/TiO_2/Au NP sandwich structures are fabricated by oblique angle deposition (OAD) and glancing angle deposition (GLAD) methods. Their optical absorbance properties and localized surface plasmon resonance (LSPR) have been studied systematically for samples prepared at different deposition conditions. Under the same deposition conditions, the Ag or Au NP substrates produced by GLAD method are more uniform and reproducible. The LSPR wavelength of Ag or Au NP substrates can be easily tuned by changing the film thickness, the deposition angle, and the coating of dielectric layer. The ability of the nanoparticle films as a chemical and biological biosensor has been explored by sensing the biomolecule NeutrAvidin and the bacterium Salmonella. Those NP films are very sensitive to chemical detection but are insensitive for bacteria detection. Based on Mie theory and effective medium theory, this is due to the small contact area between the nanoparticle and the bacteria, and the short range interaction of the local electric field. Our results demonstrate that shadowing based growth is a very versatile fabrication technique to produce reproducible and fine-tuned LSPR substrates.
机译:通过斜角沉积(OAD)和掠射角沉积(GLAD)方法制备了各种Ag和Au纳米结构膜,例如Ag纳米颗粒(NP)膜,Au NP膜和Au NP / TiO_2 / Au NP夹心结构。对于在不同沉积条件下制备的样品,已经系统地研究了它们的光吸收特性和局部表面等离子体共振(LSPR)。在相同的沉积条件下,通过GLAD方法生产的Ag或Au NP衬底更加均匀且可重现。通过改变膜厚度,沉积角度和介电层的涂层,可以轻松地调整Ag或Au NP基板的LSPR波长。通过感测生物分子NeutrAvidin和细菌沙门氏菌,已经探索了纳米颗粒薄膜作为化学和生物生物传感器的能力。这些NP膜对化学检测非常敏感,但对细菌检测不敏感。基于米氏理论和有效介质理论,这是由于纳米颗粒与细菌之间的接触面积小以及局部电场的短程相互作用。我们的结果表明,基于阴影的生长是一种非常通用的制造技术,可以生产可复制且经过微调的LSPR基板。

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