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Mode-Mismatched Dual-Beam Differential Thermal Lensing with Optical Scheme Design Optimized Using Expert Estimation for Analytical Measurements

机译:模式不匹配的双光束差动热透镜,采用光学方案设计,通过专家估算进行优化,用于分析测量

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The optimization of the optical scheme design of a mode-mismatched dual-beam thermal-lens spectrometer for differential (dual-cell) measurements in a far-field mode using diffraction thermal-lens theory is carried out. A criterion for an expert estimation of the quality of the spectrometer design for differential thermal-lens measurements in analytical chemistry (sensitivity, low limits of detection, and quantification) is also developed. The theoretical calculations agree well with previous papers on differential thermal lensing. Using the example of iron(II) tris-(1,10-phenanthrolinate), it is shown that the blank signal compensation in differential thermal lens spectrometry provides a decrease in the limit of detection by an order of magnitude compared to the decrease in single-cell measurements. Using an artificial two-component mixture of ferroin and potassium dichromate, it is shown that dual-beam differential thermal lens spectrometry makes it possible to determine trace components against 900-fold excess amounts of interfering substances.
机译:利用衍射热透镜理论,对用于远场模式下的差分(双单元)测量的模式不匹配的双光束热透镜光谱仪的光学方案设计进行了优化。还开发了一个专家评估标准,用于分析化学中的差分热透镜测量(灵敏度,检测下限和定量)的光谱仪设计质量。理论计算与先前有关差动热透镜的论文非常吻合。以铁(II)Tris-(1,10-邻苯二甲酸酯)为例,表明差示热透镜光谱法中的空白信号补偿与单次降低相比,检测限降低了一个数量级。细胞测量。使用铁蛋白和重铬酸钾的人工两组分混合物,显示出双光束差热透镜光谱法可以针对900倍过量的干扰物质确定痕量组分。

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    《Applied Spectroscopy》 |2008年第4期|439-449|共11页
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