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首页> 外文期刊>The Journal of Chemical Physics >Identification of dielectric and structural relaxations in glass-forming secondary amides
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Identification of dielectric and structural relaxations in glass-forming secondary amides

机译:鉴定形成玻璃的仲酰胺中的介电弛豫和结构弛豫

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Dielectric relaxation dynamics of secondary amides is explored in their supercooled state near the glass transition temperature T-g by investigating N-ethylacetamide and its mixtures with N-methylformamide. All the samples are found to exhibit giant dielectric permittivities, reaching over 500 in N-methylformamide-rich mixtures around T-g. For both the neat and binary systems, the predominant relaxation peak is of the Debye-type throughout the viscous regime, which is an unexpected feature for a glass former with intermediate fragility. The present results combined with the earlier reported high-temperature data reveal that the dielectric strength Delta epsilon(D) of the Debye relaxation extrapolates to zero at frequencies of 10(10)-10(11) Hz, which is about two orders of magnitude lower than the phonon frequency limit typical of the structural relaxation. This Debye process is remarkably similar to the dielectric behavior of many monohydroxy alcohols, which implies a common nature of purely exponential relaxation dynamics in these liquids. Based on the dielectric properties, we conclude that the Debye relaxation in the secondary amides is not a direct signature of the primary or alpha-relaxation, the latter being obscured at low temperatures due to the relatively low permittivity and close spectral proximity to the Debye peak. As in the case of monohydroxy alcohols, dielectric polarization and structure fluctuate on different time scales in secondary amides. The Kirkwood-Frohlich correlation factors for Debye-type liquids are also discussed. (C) 2005 American Institute of Physics.
机译:通过研究N-乙基乙酰胺及其与N-甲基甲酰胺的混合物,研究了仲酰胺在玻璃化转变温度T-g附近过冷状态下的介电弛豫动力学。发现所有样品均表现出巨大的介电常数,在T-g附近的富含N-甲基甲酰胺的混合物中达到500多种。对于纯净和二元体系,在整个粘性状态下,主要的弛豫峰都是德拜型的,这对于具有中等脆性的玻璃成型机来说是出乎意料的。目前的结果与早期报道的高温数据相结合,表明德拜弛豫的介电强度Delta epsilon(D)在10(10)-10(11)Hz频率外推至零,约为两个数量级。低于结构弛豫典型的声子频率极限。该德拜方法与许多单羟基醇的介电行为非常相似,这暗示了这些液体中纯指数弛豫动力学的共同性质。基于介电性能,我们得出结论,仲酰胺中的德拜弛豫不是伯或α-弛豫的直接特征,后者在较低的温度下由于相对较低的介电常数和接近德拜峰的光谱接近而被掩盖。 。与单羟基醇一样,仲酰胺中的介电极化和结构会在不同的时间尺度上波动。还讨论了Debye型液体的Kirkwood-Frohlich相关因子。 (C)2005美国物理研究所。

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