Tanaka Hajime
Institute of Industrial Science, University of Tokyo, Meguro-ku, Japan.
Phys Rev Lett. 2003 Feb 7;90(5):055701. doi: 10.1103/PhysRevLett.90.055701. Epub 2003 Feb 6.
Vitrification of a supercooled liquid is often characterized by the hypothetical kinetic instability point, the Vogel-Fulcher temperature T0, and the thermodynamic one, the Kauzmann temperature T(K). The widely believed relation T0 congruent with T(K) is regarded as the supporting evidence of a direct connection between the thermodynamics and kinetics of glass-forming liquids. Here we demonstrate that T(K)/T(0) systematically increases from unity with a decrease in the fragility, contrary to the common belief. This systematic deviation may be explained by a synergistic effect between the weaker cooperativity and the stronger tendency of short-range ordering in stronger glass formers.
过冷液体的玻璃化通常由假设的动力学不稳定点、Vogel-Fulcher温度T0以及热力学不稳定点、考兹曼温度T(K)来表征。人们普遍认为的T0与T(K)相等的关系被视为玻璃形成液体的热力学与动力学之间存在直接联系的证据。在此我们证明,与普遍看法相反,随着脆性降低,T(K)/T(0)会系统地从1开始增加。这种系统偏差可能是由较弱的协同性与较强玻璃形成体中更强的短程有序倾向之间的协同效应所解释的。