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Calibration-Free Quantitative Application of in Situ Raman Spectroscopy to a Crystallization Process

机译:原位拉曼光谱在结晶过程中的无标定定量应用

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In this work, in situ Raman spectroscopy is applied in a quantitative manner to crystal suspensions during crystallization in order to monitor a solvent-mediated polymorph transformation without the use of a calibration model. Assuming a linear dependency of the Raman signal intensity on the solute and on the solid concentrations of both solid-state forms, the measured time-resolved Raman spectra are fitted directly using a detailed model that describes the time evolution of the process. The applicability of this novel method is demonstrated thoroughly through the application to synthetic data of unseeded and seeded transformations as well as to various seeded polymorph transformation experiments. The resulting concentration profiles show a good agreement with the concentrations obtained by a multivariate calibration model. Additionally, the estimated kinetic parameters are compared to parameters obtained through fitting the solid-phase composition profiles that result from the calibration. The discrepancy between the estimated model parameters is small, and essentially the same descriptive process model is obtained. However, by fitting the time-resolved Raman spectra directly, a significant amount of calibration effort can be avoided.
机译:在这项工作中,在结晶过程中以定量方式将原位拉曼光谱应用于晶体悬浮液,以便在不使用校准模型的情况下监控溶剂介导的多晶型物转化。假设拉曼信号强度对溶质和两种固态形式的固体浓度呈线性依赖性,则使用描述过程随时间变化的详细模型直接拟合测得的时间分辨拉曼光谱。通过将这种新方法应用于未播种和种子转化的合成数据以及各种种子多晶型转化实验,充分证明了该新方法的适用性。所得的浓度曲线与多元校准模型获得的浓度显示出良好的一致性。另外,将估计的动力学参数与通过拟合由校准产生的固相组成曲线而获得的参数进行比较。估计的模型参数之间的差异很小,并且可以获得基本相同的描述性过程模型。但是,通过直接拟合时间分辨拉曼光谱,可以避免大量的校准工作。

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