非聚合药物增塑剂的热重分析:动力学分析、方法验证和热稳定性评价。

AAPS PharmSci Pub Date : 2002-01-01 DOI:10.1208/ps040445
Aditya S Tatavarti, David Dollimore, Kenneth S Alexander
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引用次数: 23

摘要

四种非聚合增塑剂,丙二醇,邻苯二甲酸二乙酯,三乙酸酯和甘油进行了升温热重法的动力学分析和基于蒸发的热稳定性评估。由于物质的挥发损失是其蒸汽压的函数,因此通过使用Antoine和Langmuir方程生成蒸汽压曲线来分析这些增塑剂的热稳定性。对样品化合物、三乙酸酯和甘油的蒸气压曲线进行非线性回归,得到了未知的安托万常数。通过开发一种称为“双参考法”的方法,首次验证了通过热重法获得未知Antoine常数的整个过程。基于这种方法,可以证明这种技术即使对结构不同的化合物也是准确的。对化合物挥发的动力学分析表明,挥发过程主要为零级过程。根据阿伦尼乌斯图,丙二醇、邻苯二甲酸二乙酯、三乙酸酯和甘油的蒸发活化能分别为55.80、66.45、65.12和67.54 kJ/mol。用克劳修斯-克拉珀龙图测定了化合物的蒸发焓。升温热重法结合非线性回归分析是一种快速、有效的挥发性化合物蒸汽压行为预测和热稳定性评价方法。
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A thermogravimetric analysis of non-polymeric pharmaceutical plasticizers: kinetic analysis, method validation, and thermal stability evaluation.

Four non-polymeric plasticizers, propylene glycol, diethyl phthalate, triacetin, and glycerin have been subjected to rising temperature thermogravimetry for kinetic analysis and vaporization-based thermal stability evaluation. Since volatile loss of a substance is a function of its vapor pressure, the thermal stability of these plasticizers has been analyzed by generating vapor pressure curves using the Antoine and Langmuir equations. Unknown Antoine constants for the sample compounds, triacetin and glycerin have been derived by subjecting the vapor pressure curves to nonlinear regression. For the first time, the entire process of obtaining the unknown Antoine constants through thermogravimetry has been validated by developing an approach called the 'double reference method.' Based on this method, it has been possible to show that this technique is accurate even for structurally diverse compounds. Kinetic analysis on the volatilization of compounds revealed a predominant zero order process. The activation energy values for vaporization of propylene glycol, diethyl phthalate, triacetin, and glycerin, as deduced from the Arrhenius plots, have been determined to be 55.80, 66.45, 65.12, and 67.54 kJ/mol, respectively. The enthalpies of vaporization of the compounds have been determined from the Clausius-Clapeyron plots. Rising temperature thermogravimetry coupled with nonlinear regression analysis has been shown to be an effective and rapid technique for accurately predicting the vapor pressure behavior and thermal stability evaluation of volatile compounds.

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