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首页> 外文期刊>Journal of pharmaceutical sciences. >Polymorphism of paracetamol: relative stabilities of the monoclinic and orthorhombic phases inferred from topological pressure-temperature and temperature-volume phase diagrams.
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Polymorphism of paracetamol: relative stabilities of the monoclinic and orthorhombic phases inferred from topological pressure-temperature and temperature-volume phase diagrams.

机译:扑热息痛的多态性:从拓扑压力-温度和温度-体积相图推断的单斜相和正交相的相对稳定性。

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摘要

The thermodynamic relationships between the two known polymorphs of paracetamol have been investigated, and the subsequent pressure-temperature and temperature-volume phase diagrams were constructed using data from crystallographic and calorimetric measurements as a function of the temperature. Irrespective of temperature, monoclinic Form I and orthorhombic Form II are stable phases at ordinary and high pressures, respectively. The I and II phase regions in the pressure-temperature diagram are bordered by the I-II equilibrium curve, for which a negative slope (dp/dT approximately -0.3 MPa x K(-1)) was determined although it was not observed experimentally. This curve goes through the I-II-liquid triple point whose coordinates (p approximately 234 MPa, T approximately 505 K) correspond to the crossing point of the melting curves, for which dp/dT values of +3.75 MPa x K(-1) (I) and +3.14 MPa x K(-1) (II) were calculated from enthalpy and volume changes upon fusion. More generally, this case exemplifies how the stability hierarchy of polymorphs may be inferred from the difference in their sublimation curves, as topologically positioned with respect to each other, using the phase rule and simple inferences resorting to Gibbs equilibrium thermodynamics.
机译:研究了扑热息痛的两种已知多晶型物之间的热力学关系,并使用晶体学和量热法测量的数据作为温度的函数,构建了随后的压力-温度和温度-体积相图。无论温度如何,单斜晶型I和正交晶型II分别在常压和高压下都是稳定相。压力-温度图中的I和II相区域以I-II平衡曲线为边界,尽管未通过实验观察到,但该曲线确定了负斜率(dp / dT约为-0.3 MPa x K(-1))。 。该曲线经过I-II液体三点,其坐标(p约234 MPa,T约505 K)对应于熔解曲线的交点,其dp / dT值为+3.75 MPa x K(-1) )(I)和+3.14 MPa x K(-1)(II)由熔化时的焓和体积变化计算得出。更一般而言,这种情况说明了如何使用相位规则和诉诸Gibbs平衡热力学的简单推论,从拓扑上彼此相对的升华曲线的差异推断多晶型物的稳定性。

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