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Quantification of the Enhancement Factor in Surface-Enhanced Raman Scattering

机译:表面增强拉曼散射增强因子的量化

摘要

This thesis presents a rigorous stepwise methodology towards the accurate measurement and quantification of the SERS enhancement factor (EF), the key parameter in describing the SERS effect. The work represents, we believe, a successfulattempt to resolve some of the inconsistencies in the literature and to refocus the field by emphasizing the importance of consistent definitions and rigorous quantification to elucidate matters of fundamental importance in SERS. The success inour approach is that it combines careful experimental measurements upon a soundtheoretical framework, and utilizes a 'toolbox' of techniques developed in recent years, such as bi-analyte SERS (BiASERS) techniques for single-molecule (SM) detection, and isotopic editing.In experimental work, we measure the bare Raman cross-sections of five common probes used in SERS as a first step in measuring the analytical enhancement factor (AEF) and single-molecule enhancement factor (SMEF). The methodology inmeasuring these EFs involved the use of a reference standard of known cross-section along with a careful characterization of the scattering volume throughbeam profiling experiments. As a guide to validating the reference cross-section we make extensive use of density functional theory (DFT) calculations to obtain estimates for the intrinsic Raman cross-sections of small, non-resonant probes. The results of this work showed that previous upper limits for the EF reported in the literature of 1014 were based on a faulty normalization of the EF. In fact, EFs of108 were sufficient to see single molecules, which is much lower than previously expected; under optimum conditions, even lower EFs, possibly down to 105 could be sufficient for the SM detection of resonant probes. As a valuable extension of BiASERS, we elaborate on the synthesis of isotopic analogues of a rhodamine dye as ideal partners for SM experiments. The synthesis and definitive characterization of these probes enable their use in an experiment to determine the SM regime in a liquid colloidal sample. Isotopically edited dyessuch as these, in combination with the methodologies of EF quantification outlinedherein, set the standard for those interested in accurate quantification of the SERS effect. This approach is useful in terms of both basic theoretical questions and applications such as the effective comparison of SERS substrates. Finally, we extend the techniques developed over the thesis to a long-standing and largely unresolved question in SERS: What is the minimum intrinsic Ramancross-section that can be measured as a single molecule in standard SERS conditions. In this work, we explore the SM detection non-resonant probes, which are the molecules of interest for many practical applications such as forensics andbiological assays. Specifically, we demonstrate the successful SM detection of isotopically edited adenine probes.
机译:本文提出了一种严格的分步方法,以准确测量和量化SERS增强因子(EF),这是描述SERS效果的关键参数。我们认为,这项工作是成功的尝试,它通过强调一致的定义和严格的量化对阐明SERS中至关重要的问题的重要性来解决文献中的某些矛盾并重新关注该领域。我们成功的方法是,它在合理的理论框架下结合了仔细的实验​​测量,并利用了近年来开发的“工具箱”技术,例如用于单分子(SM)检测的双分析物SERS(BiASERS)技术和同位素在实验工作中,我们测量SERS中使用的五个常用探针的裸拉曼横截面,这是测量分析增强因子(AEF)和单分子增强因子(SMEF)的第一步。测量这些EF的方法包括使用已知横截面的参考标准,以及通过光束轮廓分析实验对散射体积进行仔细表征。作为验证参考横截面的指南,我们广泛使用密度泛函理论(DFT)计算来获得对小型非共振探头的固有拉曼横截面的估计。这项工作的结果表明,先前在1014年文献中报道的EF上限基于错误的EF归一化。实际上,EFs为108足以看到单个分子,这比以前预期的要低得多。在最佳条件下,甚至更低的EF(可能低至105)也足以对共振探针进行SM检测。作为BiASERS的有价值的扩展,我们详细阐述了罗丹明染料的同位素类似物的合成方法,该方法是SM实验的理想伴侣。这些探针的合成和确定的特性使其能够用于确定液体胶体样品中SM的实验中。诸如此类的同位素编辑染料,与本文概述的EF定量方法相结合,为那些对SERS效应的准确定量感兴趣的人们设定了标准。就基本的理论问题和应用(例如SERS底物的有效比较)而言,这种方法都是有用的。最后,我们将在论文中开发的技术扩展到SERS中一个长期存在且尚未解决的问题:在标准SERS条件下,可以作为单个分子测量的最小固有拉曼横截面是多少。在这项工作中,我们探索了SM检测非共振探针,这是许多实际应用(例如法医学和生物学测定)中感兴趣的分子。具体而言,我们证明了同位素编辑的腺嘌呤探针的成功SM检测。

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    Blackie Evan;

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  • 年度 2010
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  • 正文语种 en_NZ
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