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多层金纳米粒子二维片的光谱性质。

Spectroscopic properties of multilayered gold nanoparticle 2D sheets.

机构信息

Institute for Materials Chemistry and Engineering, Kyushu University, Fukuoka 812-8581, Japan.

出版信息

Langmuir. 2012 Dec 11;28(49):17153-8. doi: 10.1021/la303533f. Epub 2012 Nov 29.

Abstract

We report the fabrication technique and optical properties of multilayered two-dimensional (2D) gold nanoparticle sheets ("Au nanosheet"). The 2D crystalline monolayer sheet composed of Au nanoparticles shows an absorption peak originating from a localized surface plasmon resonance (LSPR). It was found that the absorption spectra dramatically change when the monolayers are assembled into the multilayers on different substrates (quartz or Au). In the case of the multilayers on Au thin film (d = 200 nm), the LSPR peak is shifted to longer wavelength at the near-IR region by increasing the number of layers. The absorbance also depends on the layer number and shows the nonlinear behavior. On the other hand, the multilayers on quartz substrate show neither such LSPR peak shift nor nonlinear response of absorbance. The layer number dependence on metal surfaces can be interpreted as the combined effects between the near-field coupling of the LSPR and the far-field optics of the stratified metamaterial films, as proposed in our previous study. We also report the spectroscopic properties of hybrid multilayers composed of two kinds of monolayers, i.e., Au nanosheet and Ag nanosheet. The combination of the different metal nanoparticle sheets realizes more flexible plasmonic color tuning.

摘要

我们报告了多层二维(2D)金纳米粒子片(“Au 纳米片”)的制造技术和光学特性。由 Au 纳米粒子组成的二维晶状单层片显示出源于局域表面等离子体共振(LSPR)的吸收峰。结果发现,当单层在不同基底(石英或 Au)上组装成多层时,吸收光谱会发生剧烈变化。在 Au 薄膜(d = 200nm)上的多层中,通过增加层数,LSPR 峰会向近红外区域的长波长移动。吸光度也取决于层数,并表现出非线性行为。另一方面,在石英基底上的多层既没有这种 LSPR 峰的移动,也没有吸光度的非线性响应。在金属表面上的层数依赖性可以解释为我们之前研究中提出的 LSPR 的近场耦合与分层超材料膜的远场光学之间的组合效应。我们还报告了由两种单层(即 Au 纳米片和 Ag 纳米片)组成的混合多层的光谱特性。不同金属纳米粒子片的组合实现了更灵活的等离子体颜色调谐。

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