Department of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University, West Lafayette, Indiana 47907.
Material and Analytical Sciences, Boehringer Ingelheim Pharmaceuticals, Ridgefield, Connecticut 06877.
J Pharm Sci. 2018 Jan;107(1):192-202. doi: 10.1016/j.xphs.2017.06.012. Epub 2017 Jun 23.
Thermodynamic and kinetic aspects of crystallization of 12 structurally similar organic compounds were investigated from the supercooled liquid state by calorimetric and rheologic measurements. Based on their crystallization behaviors, these compounds were divided into 3 categories: stable glass formers, poor glass formers, and good glass formers with poor stability on reheating. Correlation was sought between thermodynamic quantities and glass formation based on nucleation and crystal growth theories. Larger values of enthalpy of fusion and melting point were found to correlate with poor glass-forming ability. Conversely, lower entropy of fusion was found to correlate with glass formation. Examination of kinetic aspects of glass formation revealed 2 important facets of good glass formers, that is, rapid increase in viscosity on supercooling and high melting point viscosity compared with non-glass formers. A broader relationship was sought between entropy of fusion and glass formation by including several glass formers from literature. Our analysis indicated that good glass formers tend to have an entropy of fusion closer to 0.3 J cm K. The structural similarity of the compounds in this study provides insights regarding the nature of intermolecular interactions responsible for the observed effect on entropy of fusion, viscosity, and crystallization kinetics.
通过量热法和流变学测量,从过冷液相研究了 12 种结构相似的有机化合物的结晶的热力学和动力学方面。根据它们的结晶行为,这些化合物被分为 3 类:稳定的玻璃形成体、差的玻璃形成体和在再加热时稳定性差的良好玻璃形成体。基于成核和晶体生长理论,在热力学量和玻璃形成之间寻求相关性。发现较大的熔融焓和熔点值与较差的成玻璃能力相关。相反,较低的熔融熵与玻璃形成相关。对玻璃形成的动力学方面的考察揭示了良好玻璃形成体的两个重要特征,即过冷时粘度的快速增加和与非玻璃形成体相比的高熔点粘度。通过包括来自文献的几个玻璃形成体,在更广泛的范围内研究了熔融熵和玻璃形成之间的关系。我们的分析表明,良好的玻璃形成体倾向于具有更接近 0.3 J cm K 的熔融熵。本研究中化合物的结构相似性提供了有关负责观察到的熔融熵、粘度和结晶动力学影响的分子间相互作用性质的见解。