分子内力
玻璃化转变
过冷
化学
玻璃化
无定形固体
下降(电信)
化学物理
热力学
阿累尼乌斯方程
粘度
物理化学
结晶学
有机化学
聚合物
活化能
医学
电信
物理
计算机科学
男科
作者
Ben A. Russell,Mario González‐Jiménez,Nikita Tukachev,Laure-Anne Hayes,Tajrian Chowdhury,Uroš Javornik,Gregor Mali,Manlio Tassieri,Joy H. Farnaby,Hans Martin Senn,Klaas Wynne
摘要
On supercooling a liquid, the viscosity rises rapidly until at the glass transition it vitrifies into an amorphous solid accompanied by a steep drop in the heat capacity. Therefore, a pure homogeneous liquid is not expected to display more than one glass transition. Here we show that a family of single-component homogeneous molecular liquids, titanium tetraalkoxides, exhibit two calorimetric glass transitions of comparable magnitude, one of which is the conventional glass transition associated with dynamic arrest of the bulk liquid properties, while the other is associated with the freezing out of intramolecular degrees of freedom. Such intramolecular vitrification is likely to be found in molecules in which low-frequency terahertz intramolecular motion is coupled to the surrounding liquid. These results imply that intramolecular barrier-crossing processes, typically associated with chemical reactivity, do not necessarily follow the Arrhenius law but may freeze out at a finite temperature.
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