Comparison of Gap-Enhanced Raman Tags and Nanoparticle Aggregates with Polarization Dependent Super-Resolution Spectral SERS Imaging.

IF 6.7 1区 化学 Q1 CHEMISTRY, ANALYTICAL Analytical Chemistry Pub Date : 2024-07-03 DOI:10.1021/acs.analchem.4c01564
Deben N Shoup, Sanjun Fan, Mario Zapata-Herrera, Hannah C Schorr, Javier Aizpurua, Zachary D Schultz
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Abstract

Strongly confined electric fields resulting from nanogaps within nanoparticle aggregates give rise to significant enhancement of surface-enhanced Raman scattering (SERS). Nanometer differences in gap sizes lead to drastically different confined field strengths; so much attention has been focused on the development and understanding of nanostructures with controlled gap sizes. In this work, we report a novel petal gap-enhanced Raman tag (GERT) consisting of a bipyramid core and a nitrothiophenol (NTP) spacer to support the growth of hundreds of small petals and compare its SERS emission and localization to a traditional bipyramid aggregate. To do this, we use super resolution spectral SERS imaging that simultaneously captures the SERS images and spectra while varying the incident laser polarization. Intensity fluctuations inherent of SERS enabled super resolution algorithms to be applied, which revealed subdiffraction limited differences in the localization with respect to polarization direction for both particles. Interestingly, however, only the traditional bipyramid aggregates experienced a strong polarization dependence in their SERS intensity and in the plasmon-induced conversion of NTP to dimercaptoazobenzene (DMAB), which was localized with nanometer precision to regions of intense electromagnetic fields. The lack of polarization dependence (validated through electromagnetic simulations) and surface reactions from the bipyramid-GERTs suggests that the emissions arising from the bipyramid-GERTs are less influenced by confined fields.

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利用偏振相关超分辨率光谱 SERS 成像比较间隙增强拉曼标签和纳米粒子聚集体。
纳米粒子聚集体中的纳米间隙产生的强约束电场可显著增强表面增强拉曼散射(SERS)。间隙大小的纳米级差异会导致截然不同的约束场强;因此,人们将大量注意力集中在开发和了解具有可控间隙大小的纳米结构上。在这项工作中,我们报告了一种新型花瓣间隙增强拉曼标签(GERT),该标签由双锥核心和硝基苯硫酚(NTP)间隔物组成,可支持数百个小花瓣的生长,并将其 SERS 发射和定位与传统的双锥聚合体进行了比较。为此,我们使用了超分辨率光谱 SERS 成像技术,在改变入射激光偏振的同时捕捉 SERS 图像和光谱。SERS 固有的强度波动使超分辨算法得以应用,从而揭示了两种粒子的定位相对于偏振方向的亚衍射限制差异。但有趣的是,只有传统的双金字塔聚合体的 SERS 强度和 NTP 向二巯基偶氮苯(DMAB)的等离子体诱导转化具有很强的极化依赖性,这种极化依赖性以纳米级精度被定位到强电磁场区域。缺乏极化依赖性(通过电磁模拟验证)以及双金字塔-GERTs 的表面反应表明,双金字塔-GERTs 产生的辐射受封闭场的影响较小。
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来源期刊
Analytical Chemistry
Analytical Chemistry 化学-分析化学
CiteScore
12.10
自引率
12.20%
发文量
1949
审稿时长
1.4 months
期刊介绍: Analytical Chemistry, a peer-reviewed research journal, focuses on disseminating new and original knowledge across all branches of analytical chemistry. Fundamental articles may explore general principles of chemical measurement science and need not directly address existing or potential analytical methodology. They can be entirely theoretical or report experimental results. Contributions may cover various phases of analytical operations, including sampling, bioanalysis, electrochemistry, mass spectrometry, microscale and nanoscale systems, environmental analysis, separations, spectroscopy, chemical reactions and selectivity, instrumentation, imaging, surface analysis, and data processing. Papers discussing known analytical methods should present a significant, original application of the method, a notable improvement, or results on an important analyte.
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