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首页> 外文期刊>The Journal of Chemical Physics >Nonlinear dielectric features of highly polar glass formers: Derivatives of propylene carbonate
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Nonlinear dielectric features of highly polar glass formers: Derivatives of propylene carbonate

机译:高极性玻璃制剂的非线性介电特征:碳酸丙酯的衍生物

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We have measured the nonlinear dielectric behavior of several highly polar propylene carbonate (PC) derivatives in the vicinity of their glass transition temperatures. Focus is on the effects of a large static electric field on the frequency dependent permittivity and on the cubic susceptibility measured using sinusoidal fields of high amplitude. The case of vinyl-PC shows dielectric saturation as well as an electro-rheological effect, i.e., a field induced increase of dielectric relaxation times, whose magnitude changes linearly with the apparent activation energy. The extent of this shift of the loss profile caused by the field correlates strongly with the peak magnitude of the cubic susceptibility, vertical bar chi(3)vertical bar, underlining the notion of a link between the vertical bar chi(3)vertical bar "hump" and this electro-rheological behavior. Further support for this picture emerges from the observation that the most polar of these liquids, (S)-(-)-methoxy-PC with epsilon(s) approximate to 250, lacks both the electro-rheological effect in epsilon" (omega) and the "hump" typically observed in vertical bar chi(3)(omega)vertical bar. The absence of any sensitivity of the dynamics to an electric field is contrary to the expectation that the electro-rheological effect correlates with the field induced entropy change, which is extraordinarily high for this liquid. The results suggest that the dependence of the relaxation time on the electric field is not directly linked to the entropy change. Published by AIP Publishing.
机译:在其玻璃化转变温度附近,我们已经测量了几种高极丙烯碳酸亚丙酯(PC)衍生物的非线性介电行为。重点是使用高振幅的正弦场测量的频率依赖性介电常数和立方易感性的效果。乙烯基-C的情况显示介电饱和度以及电流流变效应,即介电弛豫时间的磁场诱导的升高,其幅度与表观激活能量线性变化。由场引起的损耗轮廓的这种转变的程度强烈地与立方体敏感度的峰值幅度强烈地相关,垂直条状(3)垂直杆,下划线垂直条(3)垂直条之间的链接概念。驼峰“和这种电流行为。从观察结果中出现了对该图片的进一步支持,即这些液体的最极性,( - ( - ) - 具有ε的甲氧基-C近似为250,缺乏Epsilon的电流变效应“(Omega)并且通常在垂直条(3)(ω)垂直条中观察到的“驼峰”。没有动力学对电场的任何敏感性相反,所述电流变效应与现场诱导的熵变化相关这对于该液体非常高。结果表明,松弛时间对电场上的依赖性与熵变化没有直接相关联。由AIP发布发布。

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