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Influence of molecular structure on the dynamics of supercooled van der Waals liquids - art. no. 031505

机译:分子结构对过冷范德华液体动力学的影响-艺术没有。 031505

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摘要

Dielectric spectroscopy was carried out on the van der Waals liquid, 1,1'-di(4-methoxy-5-methylphenyl)cyclohexane (BMMPC) in the supercooled state at pressures up to 218 MPa. The excess wing in this type-A glass former exhibits a response to pressure and temperature changes that is identical to that of the primary structural relaxation peak, indicating that the two processes reflect correlated molecular motions. Under no conditions was a distinct secondary peak observed in BMMPC, unlike the structurally very similar BMPC [1,1'-bis(p-methoxyphenyl)cyclohexane]. However, the pressure dependences of both the glass temperature and fragility for the two materials are very close. The fragility is a decreasing function of pressure, although there is no concomitant narrowing of the relaxation peak. The pressure dependence of the relaxation times could be described as a simple volume-activated process, with the activation volume at the glass transition having the same magnitude as the molar volume. [References: 52]
机译:在过冷状态下,在高达218 MPa的压力下,对范德华液体1,1'-二(4-甲氧基-5-甲基苯基)环己烷(BMMPC)进行介电光谱分析。这种A型玻璃成型机中的多余机翼对压力和温度变化的响应与主要结构弛豫峰的响应相同,表明这两个过程反映了相关的分子运动。在任何情况下,在BMMPC中均未观察到明显的第二峰,这与结构上非常相似的BMPC [1,1'-双(对甲氧基苯基)环己烷]不同。但是,两种材料的玻璃温度和脆性两者的压力依赖性非常接近。脆性是压力的下降函数,尽管没有伴随着松弛峰的变窄。弛豫时间的压力依赖性可以描述为简单的体积活化过程,其中玻璃化转变时的活化体积与摩尔体积具有相同的大小。 [参考:52]

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