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Quantification of Material Fluorescence and Light Scattering Cross Sections Using Ratiometric Bandwidth-Varied Polarized Resonance Synchronous Spectroscopy

机译:使用比率带宽变化偏振同步光谱法的材料荧光和光散射横截面的定量

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摘要

Presented herein is the ratiometric bandwidth-varied polarized resonance synchronous spectroscopy (BVPRS2) method for quantification of material optical activity spectra. These include the sample light absorption and scattering cross-section spectrum, the scattering depolarization spectrum, and the fluorescence emission cross-section and depolarization spectrum in the wavelength region where the sample both absorbs and emits. This ratiometric BVPRS2 spectroscopic method is a self-contained technique capable of quantitatively decoupling material fluorescence and light scattering signal contribution to its ratiometric BVPRS2 spectra through the linear curve-fitting of the ratiometric BVPRS2 signal as a function of the wavelength bandwidth used in the PRS2 measurements. Example applications of this new spectroscopic method are demonstrated with materials that can be approximated as pure scatterers, simultaneous photon absorbers/emitters, simultaneous photon absorbers/scatterers, and finally simultaneous photon absorbers/scatterers/emitters. Because the only instruments needed for this ratiometric BVPRS2 technique are the conventional UV-vis spectrophotometer and spectrofluorometer, this work should open doors for routine decomposition of material UV-vis extinction spectrum into its absorption and scattering component spectra. The methodology and insights provided in this work should be of broad significance to all chemical research that involves photon/matter interactions.
机译:这里呈现的是用于定量材料光学活性谱的比率带宽变化的偏振谐振同步光谱(BVPRS2)方法。这些包括样品光吸收和散射截面光谱,散射去极化光谱和荧光发射截面和去极化横截面以及样品的波长区域中的去极化谱。该比例BVPRS2光谱方法是一种独立的技术,其能够通过PRS2测量中使用的波长带宽的函数来定量地解耦材料荧光和光散射信号的贡献,其通过比率BVPRS2信号的线性曲线拟合作为PRS2测量中使用的波长带宽的函数。使用可以近似作为纯散射体的材料,同时光子吸收剂/发射器,同时光子吸收剂/散射体,以及最终同时同时光子吸收剂/散射/发射器的材料进行了说明的示例性应用。因为该比率BVPRS2技术所需的唯一仪器是传统的UV-VIS分光光度计和光谱荧光仪,因此该工作应打开门用于常规分解材料UV-Vis消光谱的常规分解到其吸收和散射组分光谱中。本工作中提供的方法和见解应该对所有涉及光子/物质相互作用的化学研究具有广泛的意义。

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  • 来源
    《Analytical chemistry》 |2018年第12期|共9页
  • 作者单位

    Mississippi State Univ Dept Chem Mississippi State MS 39762 USA;

    DePaul Univ Dept Math Sci Chicago IL 60604 USA;

    Mississippi State Univ Dept Chem Mississippi State MS 39762 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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