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Core-shell structures with noble-metal nanoparticles for surface-enhanced Raman spectroscopy

机译:具有贵金属纳米颗粒的核 - 壳结构,用于表面增强拉曼光谱

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Abstract Plasmonic nanoparticles of noble metals, mostly gold (Au), show surface plasmon resonance features within the vicinities of visible and near-infrared spectrum, and its plasmonic techniques emerge from the cooperative oscillations of free electrons controlled by the electromagnetic field influence of the incident light within the region. This work aims at producing reduced cost surface-enhanced Raman spectroscopy (SERS) enhancement factor of gold nanoparticle (AuNP) using the finite-difference time-domain method. The result shows that for the selected three types of substrates of SiO2, Ge, and Al2O3, the SERS effects of Ag on SiO2 > Ge > Al2O3 agree with the enhancement order (i.e., SiO2 > Ge > Al2O3) from the previous experiment of Yang et al. (Appl Surf Sci 436:367–372, 2018). Due to the limitation of the semiconductor’s substrates, in subsequence simulations, Al substrate was used instead. Further simulations reveal that the intensity of Ag on Al substrate is greater than that of SiO2, Ge, and Al2O3 semiconductor substrates. In like manner, the simulation also gave a greater enhancement with AuNP/Al substrate. (The localized electric field enhancement effect of AuNP/Al substrate has more signal than the previous.) The results obtained from the consideration of different diameters of the Au sphere and the interparticle spacing for some specified range of numbers under consideration have enlarged the comprehension of SERS substrates. The operation (mechanism) of the wavelength’s arousal is a function of the particle’s structure, miniaturization, and substrate type for the SERS effect.
机译:摘要贵金属纳米型纳米粒子,大多是金(Au),显示在可见光和近红外光谱附近的表面等离子体谐振特征,其等离子体技术从通过电磁场对事件的电磁场影响控制的自由电子的协同振荡出现该地区内的光线。这项工作旨在使用有限差差时域法生产降低的成本表面增强拉曼光谱(SERS)增强因子(AUNP)的增强因子。结果表明,对于所选择的三种类型的SiO 2,Ge和Al2O3基质,Ag在SiO 2上的SERS效应与前一个试验的增强顺序(即SiO2> Ge> Al2O3)同意等等。 (申请冲浪SCI 436:367-372,2018)。由于半导体基材的限制,在随后模拟中,使用Al底物。进一步的模拟表明,Al衬底上的Ag强度大于SiO2,Ge和Al2O3半导体基板的强度。以类似方式,模拟也与AUNP / Al衬底产生了更大的增强。 (AUNP / Al衬底的局部电场增强效果比前一个更大的信号。)从考虑到Au球体的不同直径而获得的结果和所考虑的某些指定数量范围的颗粒间距的结果增大了理解Sers基材。波长唤起的操作(机制)是粒子结构,小型化和基底类型的函数,用于SERS效应。

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