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同构脱水物的热力学稳定性考虑因素。

Thermodynamic stability considerations for isostructural dehydrates.

机构信息

Materials Science, Pfizer Inc., Eastern Point Road, Groton, Connecticut 06340, USA.

出版信息

J Pharm Sci. 2012 Apr;101(4):1486-95. doi: 10.1002/jps.23037. Epub 2012 Jan 19.

Abstract

Nonstoichiometric channel hydrates are a class of crystalline hydrates that can incorporate a range of water levels as a function of temperature and relative humidity (RH). When a nonstoichiometric channel hydrate can dehydrate to yield a physically stable isostructural crystalline lattice, it may become challenging to accurately evaluate the thermodynamic stability relationship associated with a polymorphic system using traditional methods. This work demonstrates application of a eutectic-melting method to determine the stability relationship between a nonstoichiometric channel dehydrate and an anhydrous form. A transition temperature (122°C) between the isostructural dehydrate of the nonstoichiometric channel hydrate and the anhydrous polymorph was identified, with the nonstoichiometric channel hydrate being the thermodynamically stable anhydrous form at room temperature (RT). Solid-state storage at a range of RH conditions demonstrated that the nonstoichiometric channel hydrate is also the stable form at RT above an RH of 94%. These results demonstrate that the nonstoichiometric channel hydrate is the stable form at low temperatures, independent of its hydration state. It has been demonstrated that the eutectic-melting method is applicable to the study of thermodynamic stability relationships between anhydrous forms and dehydrated channel hydrates.

摘要

非化学计量通道水合物是一类结晶水合物,可根据温度和相对湿度 (RH) 吸收一定量的水。当非化学计量通道水合物可以脱水生成物理稳定的同构结晶格子时,使用传统方法准确评估与多晶型系统相关的热力学稳定性关系可能会变得具有挑战性。这项工作展示了共晶熔融方法在确定非化学计量通道脱水物和无水形式之间的稳定性关系中的应用。确定了非化学计量通道水合物的同构脱水物与无水多晶型物之间的转变温度(122°C),在室温下(RT),非化学计量通道水合物是热力学稳定的无水形式。在一系列 RH 条件下的固态储存表明,非化学计量通道水合物在 RH 高于 94%的 RT 下也是稳定形式。这些结果表明,非化学计量通道水合物在低温下是稳定的,与其水合状态无关。已经证明,共晶熔融方法适用于研究无水形式和脱水通道水合物之间的热力学稳定性关系。

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