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用于能够实现单粒子 SERS 的等离子体结构的银纳米粒子各向异性刻蚀。

Anisotropic etching of silver nanoparticles for plasmonic structures capable of single-particle SERS.

机构信息

Department of Chemistry, University of California, Berkeley, California 94720, USA.

出版信息

J Am Chem Soc. 2010 Jan 13;132(1):268-74. doi: 10.1021/ja906954f.

Abstract

The understanding of the localized surface plasmons (LSPs) that occur at the geometrically bounded surface of metal nanoparticles continues to advance as new and more complex nanostructures are found. It has been shown that the oscillation of electrons at the metal dielectric interface is strongly dependent on the size, symmetry, and proximity of nanoparticles. Here, we present a new method to chemically control the shape of silver nanocrystals by using a highly anisotropic etching process. Tuning of the etchant strength and reaction conditions allows the preparation of new nanoparticle shapes in high yield and purity, which cannot be synthesized with conventional nanocrystal growth methods. The etching process produces intraparticle gaps, which introduce modified plasmonic characteristics and significant scattering intensity in the near-infrared. These new silver particles serve as excellent substrates for wavelength-tunable, single-particle surface enhanced Raman spectroscopy (spSERS).

摘要

随着新的、更复杂的纳米结构的出现,对发生在金属纳米粒子几何边界表面的局域表面等离激元(LSPs)的理解不断深入。已经表明,金属电介质界面处电子的振荡强烈依赖于纳米粒子的尺寸、对称性和接近程度。在这里,我们提出了一种通过使用高度各向异性的刻蚀工艺来化学控制银纳米晶体形状的新方法。通过调整蚀刻剂强度和反应条件,可以高产率、高纯度地制备新的纳米颗粒形状,这是无法通过传统的纳米晶体生长方法合成的。该刻蚀工艺会在纳米颗粒内部产生间隙,从而在近红外区域引入了改良的等离子体特性和显著的散射强度。这些新的银颗粒可作为波长可调谐、单颗粒表面增强拉曼光谱(spSERS)的理想衬底。

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