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首页> 外文期刊>ACS Omega >Effect of Metallic Nanoparticles on Improving the Detection Capacity of a Micro-SERS Sensor Created by the Hybrid Waveguide of Metallic Slots and Dielectric Strips
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Effect of Metallic Nanoparticles on Improving the Detection Capacity of a Micro-SERS Sensor Created by the Hybrid Waveguide of Metallic Slots and Dielectric Strips

机译:金属纳米粒子对提高金属缝隙和介质带混合波导产生的微型SERS传感器检测能力的影响

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The enhancement factor (EF) of surface-enhanced Raman scattering (SERS) mainly depends on the electrical field intensity of surface plasmons in the place of Raman-active molecules. Because of this dependence, the Raman detection sensitivity is much higher with molecules in a small metallic gap than near a single metallic surface because of the intense local electric field resulting from the interaction between metallic objects. In this study, we investigate the SERS detection capacity improved by metallic nanoparticles in a micro-SERS sensor made of a metallic slot and a dielectric strip using the three-dimensional finite-difference time domain method. We calculated the field and charge distributions in the metallic sphere–slot junction to discuss the electromagnetic interaction between the in-sphere localized surface plasmon and the in-slot surface plasmon polariton. After that, the EF dependence of the sensor on the in-slot particle’s position, size, shape, and number is demonstrated and discussed to show the strategy of optimizing the SERS detection capacity. It follows the rule that a strong enhancement always appears in a small metallic gap due to the strong field confinement. We show that the averaging SERS enhancement factor around the particle can be increased by 10~(5) times, compared to the averaging EF in the slot without metallic nanoparticles that is reported in our previous work, reaching 10~(6) (all factors in this study are obtained by the fourth power of the division of the local plasmonic field E _(Loc) to the maximum electric value of the incident light E _(Inc(max))) and at some single points, we have a factor as high as 10~(10), which is enough to detect a single molecule. With metallic nanoparticles, the micro-SERS sensor can be developed into a highly sensitive tool for the portable and stable Raman detection of molecules or markers in pharmacology, biology, etc.
机译:表面增强拉曼散射(SERS)的增强因子(EF)主要取决于表面等离子体激元的电场强度,而不是拉曼活性分子。由于这种依赖性,在小金属间隙中的分子的拉曼检测灵敏度要比在单个金属表面附近的分子高得多,这是因为金属物体之间的相互作用导致了强烈的局部电场。在这项研究中,我们使用三维有限差分时域方法,研究了由金属狭缝和电介质带制成的微型SERS传感器中的金属纳米颗粒改善的SERS检测能力。我们计算了金属球-槽缝结中的场和电荷分布,以讨论球内局部表面等离子体激元和槽内表面等离子体激元之间的电磁相互作用。之后,演示并讨论了传感器对狭缝内粒子位置,大小,形状和数量的EF依赖性,以显示优化SERS检测能力的策略。遵循这样的规则:由于强的磁场限制,总是在小的金属间隙中出现强的增强作用。我们显示,与我们先前工作中报道的无金属纳米颗粒的缝隙中的平均EF相比,粒子周围的平均SERS增强因子可以增加10〜(5)倍(达到所有因素在这项研究中,是通过将局部等离激元场 E _(Loc)除以入射光的最大电值(i_E _(Inc(max)))的四次方获得的。点,我们有高达10〜(10)的因子,足以检测单个分子。借助金属纳米颗粒,micro-SERS传感器可以发展成为一种高度灵敏的工具,用于在药理学,生物学等领域对分子或标记物进行便携式且稳定的拉曼检测。

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