Burton R C, Ferrari E S, Davey R J, Finney J L, Bowron D T
Molecular Materials Centre, School of Chemical Engineering & Analytical Science, The University of Manchester, P.O. Box 88, Manchester M60 1QD, U.K.
J Phys Chem B. 2009 Apr 30;113(17):5967-77. doi: 10.1021/jp811515u.
The water-hexamethylenetetramine system displays features of significant interest in the context of phase equilibria in molecular materials. First, it is possible to crystallize two solid phases depending on temperature, both hexahydrate and anhydrous forms. Second, saturated aqueous solutions in equilibrium with these forms exhibit a negative dependence of solubility (retrograde) on temperature. In this contribution, neutron scattering experiments (with isotopic substitution) of concentrated aqueous hexamethylenetetramine solutions combined with empirical potential structure refinement (EPSR) were used to investigate the time-averaged atomistic details of this system. Through the derivation of radial distribution functions, quantitative details emerge of the solution coordination, its relationship to the nature of the solid phases, and of the underlying cause of the solubility behavior of this molecule.
在分子材料的相平衡背景下,水 - 六亚甲基四胺体系展现出了极具研究价值的特性。首先,根据温度不同,有可能结晶出两种固相,即六水合物和无水物形式。其次,与这些形式处于平衡状态的饱和水溶液表现出溶解度对温度的负相关性(逆行性)。在本研究中,采用了对浓六亚甲基四胺水溶液进行中子散射实验(同位素取代)并结合经验势结构精修(EPSR)的方法,来探究该体系的时间平均原子细节。通过推导径向分布函数,得出了溶液配位的定量细节、其与固相性质的关系以及该分子溶解度行为的潜在原因。