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Optimization of laser deposited silver nanoparticle substrates for surface-enhanced raman spectroscopy

机译:激光沉积银纳米颗粒基板的优化,用于表面增强拉曼光谱

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摘要

Creating sensitive and reproducible substrates for surface-enhanced Raman spectroscopy (SERS) has been a challenge in recent years. While SERS offers significant benefits over traditional Raman spectroscopy, certain hindrances have limited their commercial use, especially in settings where low limits of detection are necessary. We studied a variety of laser-deposited silver microstructured SERS substrates with different morphology as a means to optimize analyte detection. We found that using a 405 nm laser to deposit lines of silver nanoparticles (AgNPS) from a 2 mM silver nitrate and sodium citrate solution offered not only the best enhancement, but also the most consistent and reproducible substrates. We also found that the probability of deposition by laser was wavelength dependent and that longer wavelengths were less likely to deposit than shorter wavelengths. This work offers a better understanding of the laser deposition process as well as how substrate shape and structure effect SERS signals.
机译:近年来,为表面增强拉曼光谱 (SERS) 创建灵敏且可重现的基板一直是一项挑战。虽然SERS与传统拉曼光谱相比具有显著的优势,但某些障碍限制了其商业用途,特别是在需要低检测限的环境中。我们研究了各种具有不同形态的激光沉积银微结构SERS底物,以此作为优化分析物检测的手段。我们发现,使用 405 nm 激光从 2 mM 硝酸银和柠檬酸钠溶液中沉积银纳米颗粒 (AgNPS) 线不仅提供了最佳的增强效果,而且还提供了最一致和可重复的底物。我们还发现,激光沉积的概率与波长有关,并且较长波长比较短波长沉积的可能性更小。这项工作可以更好地了解激光沉积过程以及基板形状和结构如何影响SERS信号。

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