首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Novel Approaches in Tip-Enhanced Raman Spectroscopy: Accurate Measurement of Enhancement Factors and Pesticide Detection in Tip Dimer Configuration
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Novel Approaches in Tip-Enhanced Raman Spectroscopy: Accurate Measurement of Enhancement Factors and Pesticide Detection in Tip Dimer Configuration

机译:尖端增强拉曼光谱的新方法:精确测量增强因子和尖端二聚体配置中的农药检测

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Tip-enhanced Raman spectroscopy (TERS) allows the precise manipulation of a nanometric probe for surface chemical analysis by plasmon-based amplification of Raman signals; however, acknowledged procedures and materials for assessing the enhancement factor in different configurations are still lacking. In this work, we propose a technique for the standardization of TERS intensity measurements, by chemisorption of different organic Raman-active molecules on plasmonic probes, and compare it to the conventional procedures addressed to the same goals. In addition, by ideally considering TERS as a special case of surface-enhanced Raman (SERS) involving a single nano-particle, we experimentally realized the three most common configurations in SERS: i. isolated particle, ii. single scattering probe on a surface, and iii. nanoparticle dimers. To achieve the latter in an accessible way with plasmonic probes, we established a fabrication procedure for a substrate presenting multiple nanometric tips, intended to be easily approached and mapped for fast, reproducible assembly of tunable tip-tip dimers that further amplify Raman scattering with respect to conventional gap mode TERS; enhancement factors up to (1.4 +/- 0.4) x 10(10) were calculated. The three configurations were successfully tested, and enhancement factors were quantified with their associated uncertainties, employing self-assembled monolayers of several probe molecules, including thiophenol, a de facto enhanced Raman standard, and thiram, a common use, law-regulated pesticide, hence opening up TERS to real world applications in agricultural and food analysis.
机译:尖端增强拉曼光谱(TERS)允许通过基于拉曼信号的基于等离子体的扩增进行精确地操纵纳米仪进行表面化学分析;但是,仍然缺乏确认用于评估不同配置的增强因子的程序和材料。在这项工作中,我们提出了一种通过在等离子体探针上的不同有机拉曼活性分子的化学吸附,并将其与解决相同目标的传统程序进行了标准化的技术。此外,通过理想地考虑TERS作为涉及单个纳米粒子的表面增强拉曼(SERS)的特殊情况,我们通过实验实现了SERS中的三种最常见的配置:I。孤立的粒子,II。表面上的单散射探针和III。纳米粒子二聚体。为了实现后者以具有等离子体探针的可进入方式实现的,我们建立了呈现多个纳米尖端的基板的制造过程,该制造过程旨在容易地接近和映射用于可调谐尖端二聚体的快速,可再现的组装,其进一步放大拉曼散射的可调节尖端二聚体传统的间隙模式;计算高达(1.4 +/- 0.4)×10(10)的增强因子。成功测试了三种配置,并通过相关的不确定性来量化增强因子,采用几种探针分子的自组装单层,包括硫代酚,事实上增强的拉曼标准,以及普通使用,法律规定的农药,因此对农业和粮食分析中的现实世界应用开放。

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