首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Balancing the Effects of Extinction and Enhancement for Optimal Signal in Surface-Enhanced Femtosecond Stimulated Raman Spectroscopy
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Balancing the Effects of Extinction and Enhancement for Optimal Signal in Surface-Enhanced Femtosecond Stimulated Raman Spectroscopy

机译:平衡表面增强飞秒激发拉曼光谱中最佳信号的消光和增强效应

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摘要

The field of ultrafast surface-enhanced Raman spectroscopy (SERS) is rapidly expanding; however, few applications for these new techniques have been demonstrated. One obstacle for the widespread application of ultrafast SERS is the addition of highly enhancing and scattering plasmonic substrates to already complex nonlinear spectroscopies. The competition between extinction and enhancement in ultrafast SERS techniques complicates the optimization of a number of experimental parameters. Here we study the concentration and path length dependences of signal quality in surface-enhanced femtosecond stimulated Raman spectroscopy (SE-FSRS). We find that in contrast to previous studies of spontaneous SERS which use signal magnitudes to define optimal experimental parameters, signal-to-noise ratios (SNRs) are the best measure of ideal experimental parameters in SE-FSRS. We report ideal concentrations and path lengths to use in transmissive geometry SE-FSRS experiments with colloidal nanoparticle substrates. Our results indicate that despite competing effects from SERS and FSRS mechanisms, similarly performed SE-FSRS and SERS experiments yield maximum SNRs using the same concentration and path length due to the overwhelming effects of extinction. By understanding how to optimize SE-FSRS experimental parameters, ultrafast SERS, and SE-FSRS in particular, can be more readily applied to future plasmonically enhanced spectroscopic studies.
机译:超快速表面增强拉曼光谱学(SERS)的领域正在迅速扩大。但是,这些新技术的应用很少。超快SERS广泛应用的一个障碍是在已经很复杂的非线性光谱学中增加了高度增强和散射的等离子体衬底。超快SERS技术中消光和增强之间的竞争使许多实验参数的优化变得复杂。在这里,我们研究了表面增强飞秒激发拉曼光谱(SE-FSRS)中信号质量的浓度和路径长度依赖性。我们发现,与以往使用信号幅度定义最佳实验参数的自发SERS研究相反,信噪比(SNR)是SE-FSRS中理想实验参数的最佳度量。我们报告了在胶体纳米粒子基质的透射几何SE-FSRS实验中使用的理想浓度和光程长度。我们的结果表明,尽管来自SERS和FSRS机制的竞争效应,但由于灭绝的压倒性影响,在相同浓度和路径长度下,类似执行的SE-FSRS和SERS实验仍可产生最大SNR。通过了解如何优化SE-FSRS实验参数,可以将超快SERS(尤其是SE-FSRS)更容易地应用于未来的等离子体增强光谱研究。

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