玻璃化转变
热力学
动力学
粘度
聚变熵
动能
熔点
材料科学
熵(时间箭头)
工作(物理)
成形性
脆弱性
化学
聚变焓
聚合物
冶金
复合材料
物理
量子力学
作者
Wenkang Tu,Xiangqian Li,Zeming Chen,Ying Dan Liu,M. Labardi,S. Capaccioli,Marian Paluch,Li‐Min Wang
摘要
Scrutinizing critical thermodynamic and kinetic factors for glass formation and the glass stability of materials would benefit the screening of the glass formers for the industry of glassy materials. The present work aims at elucidating the factors that contribute to the glass formation by investigating medium-sized molecules of pharmaceuticals. Glass transition related thermodynamics and kinetics are performed on the pharmaceuticals using calorimetric, dielectric, and viscosity measurements. The characteristic thermodynamic and kinetic parameters of glass transition are found to reproduce the relations established for small-molecule glass formers. The systematic comparison of the thermodynamic and kinetic contributions to glass formation reveals that the melting-point viscosity is the crucial quantity for the glass formation. Of more interest is the finding of a rough correlation between the melting-point viscosity and the entropy of fusion normalized by the number of beads of the pharmaceuticals, suggesting the thermodynamics can partly manifest its contribution to glass formation via kinetics.
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