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首页> 外文期刊>Journal of pharmaceutical sciences. >Polymorphism of progesterone: relative stabilities of the orthorhombic phases I and II inferred from topological and experimental pressure-temperature phase diagrams.
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Polymorphism of progesterone: relative stabilities of the orthorhombic phases I and II inferred from topological and experimental pressure-temperature phase diagrams.

机译:孕酮的多态性:从拓扑和实验压力-温度相图推断正交相I和II的相对稳定性。

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摘要

Temperatures and melting enthalpies of orthorhombic Phases I and II of natural progesterone, together with the temperature dependence of their lattice parameters and the specific volume of the melt at ordinary pressure, have been determined. With these results, a topological pressure-temperature (P-T) phase diagram accounting for the thermodynamic relationships between these phases has been constructed by way of the Clapeyron equation. The dependence of the melting temperature on the pressure has also been determined for each phase by high-pressure differential thermal analysis. It was found that, upon increasing the pressure, the melting curves converge to the I-II-liquid triple point (T(I-II-liquid) = 459.4 K, P(I-II-liquid) = 149.0 MPa), in close agreement with its topological location. This entails that Phase II should exhibit a stable phase region at higher pressure.
机译:已经确定了天然孕酮的正交相I和II的温度和熔化焓,以及它们的晶格参数与温度的关系,以及在常压下的熔体比容。有了这些结果,就可以通过Clapeyron方程构建考虑这些相之间热力学关系的拓扑压力-温度(P-T)相图。还已经通过高压差热分析确定了各相的熔融温度对压力的依赖性。发现在增加压力时,熔融曲线收敛到I-II-液体三相点(T(I-II-液体)= 459.4 K,P(I-II-液体)= 149.0 MPa),在与其拓扑位置密切相关。这使得第二相在较高压力下应表现出稳定的相区域。

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