Wondraczek Lothar, Behrens Harald
Corning European Technology Center, Corning SAS, Avon, France F-77210.
J Chem Phys. 2007 Oct 21;127(15):154503. doi: 10.1063/1.2794745.
Structural relaxation in silicate glasses with different (p,T) histories was experimentally examined by differential scanning calorimetry and measurements of molar volume under ambient pressure. Temperature and pressure-dependent rates of changes in molar volume and generation of excess enthalpy were determined for sodium trisilicate, soda lime silicate, and sodium borosilicate (NBS) compositions. From the derived data, Prigogine-Defay ratios are calculated and discussed. Changes of excess enthalpy are governed mainly by changes in short-range structure, as is shown for NBS where boron coordination is highly sensitive to pressure. For all three glasses, it is shown how the relaxation functions that underlie volume, enthalpy, and structural relaxation decouple for changes in cooling rates and pressure of freezing, respectively. The magnitude of the divergence between enthalpy and volume may be related to differences in structural sensitivity to changes in the (p,V,T,t) space on different length scales. The findings suggest that the Prigogine-Defay ratio is related to the magnitude of the discussed decoupling effect.
通过差示扫描量热法以及在常压下对摩尔体积的测量,对具有不同(压力,温度)历史的硅酸盐玻璃中的结构弛豫进行了实验研究。测定了偏硅酸钠、钠钙硅酸盐和硼硅酸钠(NBS)组合物的摩尔体积随温度和压力变化的速率以及过剩焓的产生情况。根据所得数据,计算并讨论了普里戈金 - 德法伊比率。过剩焓的变化主要由短程结构的变化决定,如在硼配位对压力高度敏感的NBS中所示。对于所有三种玻璃,分别展示了体积、焓和结构弛豫所基于的弛豫函数如何因冷却速率和凝固压力的变化而解耦。焓与体积之间差异的大小可能与不同长度尺度上结构对(压力,体积,温度,时间)空间变化的敏感性差异有关。研究结果表明,普里戈金 - 德法伊比率与所讨论的解耦效应的大小有关。