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项链状 Au-Ag 纳米合金:激光辅助合成与非线性光学性质。

Necklace-shaped Au-Ag nanoalloys: laser-assisted synthesis and nonlinear optical properties.

机构信息

Iranian National Center for Laser Science and Technology (INLC),Tehran, Iran.

出版信息

Nanotechnology. 2011 Jun 10;22(23):235703. doi: 10.1088/0957-4484/22/23/235703. Epub 2011 Apr 12.

Abstract

Here in this paper, necklace-shaped Au-Ag nanoalloys (NAs) have been synthesized by a laser-based approach. A chain of Ag nanoparticles (NPs), which were joined together with Au junctions, was formed upon copper vapor laser (CVL) irradiation of a colloidal mixture of Ag and Au NPs; while the corresponding NPs were separately provided by laser ablation of gold and silver targets in deionized water by a 1064 nm Q-switched Nd:YAG laser. Dependence of the NAs development process on the CVL irradiation time in three distinct stages of as-mixed, nucleation and complete formation has been systematically studied by UV-vis optical absorption spectroscopy analysis as well as by transmission electron microscopy (TEM), which was exploited to visually confirm the NAs evolution through the process. Furthermore, the x-ray photoelectron spectroscopy (XPS) technique was accurately employed to determine the synthesized alloy content. On the other hand, using the open-and closed-aperture Z-scan technique, the nonlinear absorption (NLA) as well as nonlinear refraction (NLR) changes in Au-Ag NAs were investigated through their formation. The deduced results from the nonlinear optical properties of the colloidal NAs in the mentioned stages were interpreted considering the spectroscopic and microscopic observations. The total change of individual Au and Ag NPs saturable absorption (SA) into the reverse saturable absorption (RSA) behavior was concluded through the evolution into Au-Ag NAs.

摘要

在此文中,通过基于激光的方法合成了项链状的 Au-Ag 纳米合金(NAs)。在铜蒸气激光(CVL)辐照胶体 Ag 和 Au NPs 的混合物时,形成了由 Au 连接的 Ag 纳米颗粒(NPs)链;而相应的 NPs 则是通过在去离子水中用 1064nm 调 Q 钕:YAG 激光分别从金和银靶材的激光烧蚀获得。通过紫外可见吸收光谱分析以及透射电子显微镜(TEM)对纳米合金发展过程对 CVL 辐照时间的依赖性进行了系统研究,TEM 用于通过过程直观地确认 NAs 的演变。此外,还准确地使用 X 射线光电子能谱(XPS)技术来确定合成合金的含量。另一方面,通过开-闭环 Z 扫描技术,通过其形成研究了 Au-Ag NAs 的非线性吸收(NLA)和非线性折射(NLR)变化。考虑到光谱和微观观察结果,解释了在所述阶段胶体 NAs 的非线性光学性质的推导结果。通过演变成 Au-Ag NAs,得出了个体 Au 和 Ag NPs 饱和吸收(SA)向反饱和吸收(RSA)行为转变的总变化。

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