首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Trinitarian quantitative analysis of the continuous organic phase and built-in tags as internal standards for two-liquid interfacial surface-enhanced Raman spectroscopy
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Trinitarian quantitative analysis of the continuous organic phase and built-in tags as internal standards for two-liquid interfacial surface-enhanced Raman spectroscopy

机译:连续有机相和内置标签的三宗主义定量分析作为双液界面增强拉曼光谱的内部标准

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The reported IS mainly includes discrete surface-modified tags and isolated core-shell built-in tags, and our group previously proposed continuous phase organic solvents as the inherent IS. These different kinds of IS may generate different quantitative accuracies for SERS analysis but their comparison has not yet been determined, and it is a fundamental question that should be addressed but has long been ignored. Herein we determined the capability of the above three kinds of IS through trinitarian quantitation of two-liquid interfacial SERS signals by means of assembling three-dimensional liquid-like plasmonic arrays. Interestingly, no absolute advantage or disadvantage for each IS is observed, but it depends on the liquid phase that the analyte dissolves in. The signals from each IS all indicated superior stability, even under harsh conditions. The IS attached to the surface of the nanoparticles can sense the fluctuation of the microenvironment well, and shows superior ability in quantifying high-flow analytes, such as the quantitative analysis of biphasic-soluble molecule R6G. The organic solvent serves as the inherent IS of the liquid-liquid interface (LLI), avoiding the complicated procedure of introducing additional ISs, and is suitable for the quantitative analysis of water-soluble molecule MB. The target analyte TBZ which dissolved in the organic phase produces a stable signal itself without the need for additional ISs. This study provides a better understanding for ensuring the accuracy of quantitative detection of analytes under different solution conditions.
机译:据报道主要包括离散的表面改性标签和隔离核心壳内置标签,以及我们先前提出的连续相机溶剂作为固有的。这些不同类型的可能会产生不同的定量精度对于SERS分析,但它们的比较尚未确定,这是应该解决的根本问题,但长期被忽略。这里,我们确定了通过组装三维液体状等离子体阵列的三维界面SERs信号的三维界面信号的三种定量的能力。有趣的是,没有观察到每种绝对的优势或缺点,但这取决于分析物溶解的液相。来自每个的信号也是如此表明稳定性,即使在恶劣的条件下也是优异的稳定性。附着在纳米颗粒的表面上可以感测微环境阱的波动,并且显示出量化高流量分析物的优异能力,例如双相可溶性分子R6G的定量分析。有机溶剂用作液体液体界面(LLI)的固有,避免了引入额外IS的复杂程序,并且适用于水溶性分子MB的定量分析。溶解在有机相中的靶分析物TBZ产生稳定的信号本身,无需另外的IS。本研究提供了更好的理解,以确保在不同溶液条件下进行定量检测的定量检测准确性。

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