Patyk-Kaźmierczak Ewa, Podsiadło Marcin, Szafrański Marek, Katrusiak Andrzej
Department of Materials Chemistry, Faculty of Chemistry , Adam Mickiewicz University , Uniwersytetu Poznańskiego 8 , 61-614 Poznań , Poland.
Faculty of Physics , Adam Mickiewicz University , Uniwersytetu Poznańskiego 2 , 61-614 Poznań , Poland.
J Phys Chem B. 2019 Aug 22;123(33):7190-7196. doi: 10.1021/acs.jpcb.9b03617. Epub 2019 Aug 14.
The binary diagram for pyrimidine:water mixtures has been determined by differential scanning calorimetry, in situ single-crystal, and powder X-ray diffraction experiments. The eutectic point has been located near the 1:4 n/n ratio at 234.5 K. The eutectic and nearly eutectic mixtures easily vitrify, and the vitrification could be kinetically induced for 1:3 n/n mixtures, too. Depending on the cooling rate, the 1:4 mixture freezes in the glass state, as a conglomerate of the glass and crystalline phases, or as the eutectic mixture of pyrimidine phase I and hexagonal ice I. When heated above 160 K, the glass phase transforms to a novel crystalline phase, tentatively identified as a pyrimidine hydrate, which in turn at ca. 200-210 K transforms into a eutectic mixture of pyrimidine phase I and hexagonal ice I. The pyrimidine-water binary diagram and novel crystalline and amorphous phases are relevant to the thermodynamic behavior of hydrophilic pyrimidine and its natural and synthetic derivatives in humid environments. The presently determined binary diagram can be straightforwardly applied for assessing the contents of water in highly hygroscopic pyrimidine samples.
通过差示扫描量热法、原位单晶和粉末X射线衍射实验测定了嘧啶与水混合物的二元相图。共晶点位于234.5K时n/n比接近1:4处。共晶和近共晶混合物很容易玻璃化,对于n/n比为1:3的混合物,也可通过动力学诱导实现玻璃化。根据冷却速率的不同,1:4混合物会以玻璃态冻结,形成玻璃相和结晶相的聚集体,或者以嘧啶I相和六方冰I的共晶混合物形式冻结。当加热到160K以上时,玻璃相转变为一种新的结晶相,初步鉴定为嘧啶水合物,该结晶相在约200 - 210K时又转变为嘧啶I相和六方冰I的共晶混合物。嘧啶 - 水二元相图以及新的结晶相和非晶相与亲水性嘧啶及其天然和合成衍生物在潮湿环境中的热力学行为相关。目前测定得到的二元相图可直接用于评估高吸湿性嘧啶样品中的水含量。