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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Quantitative analysis of sulfathiazole polymorphs in ternary mixtures by attenuated total reflectance infrared, near-infrared and Raman spectroscopy.
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Quantitative analysis of sulfathiazole polymorphs in ternary mixtures by attenuated total reflectance infrared, near-infrared and Raman spectroscopy.

机译:衰减全反射红外光谱,近红外光谱和拉曼光谱法定量分析三元混合物中磺胺噻唑多晶型物。

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摘要

The simultaneous quantitative analysis of sulfathiazole polymorphs (forms I, III and V) in ternary mixtures by attenuated total reflectance-infrared (ATR-IR), near-infrared (NIR) and Raman spectroscopy combined with multivariate analysis is reported. To reduce the effect of systematic variations, four different data pre-processing methods; multiplicative scatter correction (MSC), standard normal variate (SNV), first and second derivatives, were applied and their performance was evaluated using their prediction errors. It was possible to derive a reliable calibration model for the three polymorphic forms, in powder ternary mixtures, using a partial least squares (PLS) algorithm with SNV pre-processing, which predicted the concentration of polymorphs I, III and V. Root mean square errors of prediction (RMSEP) for ATR-IR spectra were 5.0%, 5.1% and 4.5% for polymorphs I, III and V, respectively, while NIR spectra had a RMSEP of 2.0%, 2.9%, and 2.8% and Raman spectra had a RMSEP of 3.5%, 4.1%, and 3.6% for polymorphs I, III and V, respectively. NIR spectroscopy exhibits the smallest analytical error, higher accuracy and robustness. When these advantages are combined with the greater convenience of NIR's "in glass bottle" sampling method both ATR-IR and Raman methods appear less attractive.
机译:据报道,通过衰减全反射-红外(ATR-IR),近红外(NIR)和拉曼光谱与多元分析相结合的方法,可以对三元混合物中的硫代噻唑多晶型物(形式I,III和V)进行同时定量分析。为了减少系统变化的影响,提供了四种不同的数据预处理方法;应用乘积散射校正(MSC),标准正态变量(SNV),一阶和二阶导数,并使用其预测误差评估其性能。使用偏最小二乘(PLS)算法和SNV预处理,可以得出粉末三元混合物中三种多晶型形式的可靠校准模型,该算法预测了I,III和V型多晶型物的浓度。均方根多晶型物I,III和V的ATR-IR光谱预测误差(RMSEP)分别为5.0%,5.1%和4.5%,而NIR光谱的RMSEP为2.0%,2.9%和2.8%,拉曼光谱为多晶型物I,III和V的RMSEP分别为3.5%,4.1%和3.6%。近红外光谱显示出最小的分析误差,更高的准确性和鲁棒性。当将这些优点与NIR的“玻璃瓶中”采样方法的更大便利性结合在一起时,ATR-IR和拉曼方法的吸引力都降低了。

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