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透射拉曼光谱中信号随深度的变化关系。

Dependence of signal on depth in transmission Raman spectroscopy.

机构信息

Central Laser Facility, Research Complex at Harwell, STFC Rutherford Appleton Laboratory, Harwell Oxford, Didcot, UK.

出版信息

Appl Spectrosc. 2011 Jul;65(7):724-33. doi: 10.1366/11-06259.

Abstract

Recently, transmission Raman spectroscopy has been shown to be a valuable tool in the volumetric quantification of pharmaceutical formulations. In this work a Monte Carlo simulation and experimental study are performed to elucidate the dependence of the Raman signal on depth from the viewpoint of probing pharmaceutical tablets and powders in this experimental configuration. The transmission Raman signal is shown to exhibit a moderate bias toward the center of the tablets and this can be considerably reduced by using a recently developed Raman signal-enhancing concept, the "photon diode." The enhancing element not only reduces the bias but also increases the overall Raman signal intensity and consequently improves the signal-to-noise ratio of the measured spectrum. Overall, its implementation with appropriately chosen reflectivity results in a more uniform volumetric sampling across the half of the tablet where the photon diode is used (or across the tablet's entire depth if two photon diodes are used on each side of tablet) and enhanced overall sensitivity. These findings are substantiated experimentally on a segmented tablet by inserting a poly(ethelyne terephthalate) (PET) film doped with TiO(2) at different depths and monitoring its contribution to the overall transmission Raman signal from the segmented tablet. The numerical simulations also indicate considerable sensitivity of the overall Raman signal to the absorption of the sample, which is in line with large migration distances traversed by photons in these measurements. The presence of sample absorption was shown numerically to reduce the signal enhancement effect while the overall depth-dependence profile remained broadly unchanged. The absorption was also shown to produce a depth profile with the photon diode similar to that without it, although with a reduced absolute intensity of Raman signals and diminished enhancement effect.

摘要

最近,传输拉曼光谱已被证明是一种有价值的工具,可用于药物制剂的体积定量。在这项工作中,进行了蒙特卡罗模拟和实验研究,从在这种实验配置中探测药物片剂和粉末的角度阐明了拉曼信号对深度的依赖性。结果表明,传输拉曼信号表现出对片剂中心的适度偏差,而使用最近开发的拉曼信号增强概念“光子二极管”可以大大减少这种偏差。增强元件不仅减少了偏差,而且还增加了整体拉曼信号强度,从而提高了测量光谱的信噪比。总的来说,它与适当选择的反射率一起实施,导致在使用光子二极管的片剂的一半(或在片剂的整个深度,如果在片剂的每一侧使用两个光子二极管)中实现更均匀的体积采样,并且整体灵敏度增强。这些发现通过在分段片剂中插入掺杂有 TiO2 的聚(对苯二甲酸乙二酯)(PET)薄膜并从分段片剂监测其对整体传输拉曼信号的贡献,在实验上得到了证实。数值模拟还表明,整体拉曼信号对样品吸收的敏感性相当大,这与这些测量中光子所经历的大迁移距离一致。数值上表明,样品吸收会降低信号增强效果,而整体深度依赖轮廓基本保持不变。吸收还显示出与没有它的情况类似的具有光子二极管的深度分布,尽管拉曼信号的绝对强度降低且增强效果减弱。

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