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具有缔合特性的两种液体混合物的异常成分动力学。

Anomalous component dynamics of a binary mixture of associating glass-forming liquids.

机构信息

State Key Lab of Metastable Materials Science and Technology and College of Materials Science and Engineering, Yanshan University, Qinhuangdao, Hebei, 066004 China.

出版信息

J Phys Chem B. 2011 Feb 3;115(4):719-24. doi: 10.1021/jp1101362. Epub 2010 Dec 15.

Abstract

The binary mixtures of propylene glycol (PG) with 2-ethylhexylamine (EHA) show changes of the dynamics of the higher-T(g) component PG on increasing the concentration of the lower T(g) component EHA very different or even opposite in trend from those found in other associating and nonassociating binary mixtures. For example, the fragility index m increases and the coupling parameter n of the PG component increases on adding EHA, while T(g) of the PG component does not change up to 0.5 molar fraction of EHA. From the features present in the broadband dielectric spectra of the PG component at different compositions, the anomalies are identified to originate from the enhancement of intermolecular coupling in the primary relaxation of the higher-T(g) PG component by the presence of the EHA component. The enhancement can be traced to the fact that neat EHA has larger intermolecular coupling than neat PG, despite the former having a lower T(g) than the latter. The enhancement of intermolecular coupling of the PG component increases on increasing the concentration of EHA in the mixture, as evidenced by the appearance of the JG β-relaxation of the PG component well separated from the α-relaxation when the molar fraction of EHA has been increased to 0.75. In contrast, the JG β-relaxation of neat PG is too close to the α-relaxation and cannot be resolved. The anomalous dynamics of PG in the mixtures is challenging to all theories and models of glass transition to explain. The insight gained on the physical origin of the anomalous dynamics leads to a rationalization in the framework of the coupling model.

摘要

丙二醇(PG)与 2-乙基己胺(EHA)的二元混合物在增加低玻璃化转变温度(Tg)组分 EHA 的浓度时,表现出对较高 Tg 组分 PG 的动力学变化与其他缔合和非缔合二元混合物完全不同,甚至趋势相反。例如,PG 组分的脆性指数 m 增加,耦合参数 n 增加,而 PG 组分的 Tg 直到 EHA 的摩尔分数达到 0.5 时都没有变化。从不同组成的 PG 组分宽频介电谱中存在的特征可以看出,这些异常源于 EHA 组分存在增强了较高 Tg 的 PG 组分主松弛过程中的分子间耦合。这种增强可以追溯到这样一个事实,即尽管 EHA 的 Tg 比 PG 低,但纯 EHA 的分子间耦合比纯 PG 大。随着混合物中 EHA 浓度的增加,PG 组分的分子间耦合增强,这可以从当 EHA 的摩尔分数增加到 0.75 时,PG 组分的 JG β-松弛与 α-松弛明显分开得到证明。相比之下,纯 PG 的 JG β-松弛与 α-松弛太接近,无法分辨。混合物中 PG 的异常动力学对玻璃化转变的所有理论和模型都提出了挑战。对异常动力学的物理起源的深入了解导致在耦合模型的框架内得到了合理化。

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