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Nanosecond laser ablation of Ag-Au films in water for fabrication of nanostructures with tunable optical properties

机译:水中Ag-Au膜的纳秒激光烧蚀,用于制造具有可调光学特性的纳米结构

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摘要

In this study, we present results on nanosecond laser ablation of Ag-Au bimetallic thin films in double-distilled water. A standard on-axis pulsed laser deposition technology is used for the thin-film deposition. The targets used in the deposition stage were composed of two sections, each containing Au or Ag. Varying the area of the sections of the target, thin bimetallic films with different ratio of Ag:Au (72:28, 56:44, 50:50, and 34:66) were obtained. As-deposited thin films were immersed in double-distilled water and undergo irradiation with nanosecond laser pulses. The optical absorption spectra of the obtained bimetallic colloids show a single-surface plasmon resonance (SPR) band, positioned between SPR bands of the monometallic Ag and Au nanoparticles (NPs), proving the formation of Ag-Au alloyed NPs. A linear dependence of the SPR maximum of the resulting colloidal NPs on the metal concentration of the deposited thin films was established. The influence of the laser wavelength (the four harmonics of Nd:YAG laser), laser fluence and film thickness on the morphology, particle-size distribution, and optical properties of the obtained colloidal Ag-Au NPs was also studied. TEM analyses of the dried drops of the colloids reveal mainly two types of shapes of the produced nanostructures depending on the processing conditions: spherical NPs and network of nanowires. A characteristics size of the formed nanostructures of about a few nanometers was estimated in the cases of ablation at all the wavelengths used. However, a broader size distribution and presence of larger amount of bigger particles (diameters up to 50 nm) were observed in the case of ablation at 1064 nm. The laser fluence and film thickness are also found to influence the nanostructure size and morphology. The proposed technique can be a basis for the fabrication of complex nanostructure colloids with application in biophotonics, sensor design, and catalysis.
机译:在这项研究中,我们介绍了在双蒸馏水中Ag-Au双金属薄膜的纳秒激光烧蚀的结果。标准的同轴脉冲激光沉积技术用于薄膜沉积。沉积阶段使用的靶材由两个部分组成,每个部分都包含Au或Ag。改变靶的截面面积,获得具有不同Ag∶Au比(72∶28、56∶44、50∶50和34∶66)的双金属薄膜。将沉积的薄膜浸入双蒸馏水中,并接受纳秒激光脉冲照射。所获得的双金属胶体的光吸收光谱显示出位于单金属Ag和Au纳米颗粒(NPs)的SPR带之间的单表面等离子体共振(SPR)带,证明形成了Ag-Au合金化NP。建立了所得胶体NP的SPR最大值对沉积的薄膜的金属浓度的线性依赖性。还研究了激光波长(Nd:YAG激光的四个谐波),激光通量和膜厚对所得胶态Ag-Au NPs的形貌,粒径分布和光学性能的影响。胶体干燥液滴的TEM分析表明,取决于加工条件,所产生的纳米结构的形状主要有两种:球形NP和纳米线网络。在所有使用的波长烧蚀的情况下,估计形成的纳米结构的特征尺寸约为几纳米。但是,在1064 nm处进行烧蚀的情况下,观察到较宽的尺寸分布并存在大量的较大颗粒(直径最大为50 nm)。还发现激光能量密度和膜厚度会影响纳米结构的尺寸和形态。所提出的技术可以作为制造复杂纳米结构胶体的基础,并将其应用于生物光子学,传感器设计和催化。

著录项

  • 来源
    《Applied Physics》 |2018年第12期|847.1-847.9|共9页
  • 作者单位

    Bulgarian Acad Sci Inst Elect Tzarigradsko Chaussee 72 BU-1784 Sofia Bulgaria;

    Bulgarian Acad Sci Inst Opt Mat & Technol G Bonchev St Bl 109 BU-1113 Sofia Bulgaria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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