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The Yang-Yang anomaly in liquid-liquid criticality: Experimental evidence from adiabatic scanning calorimetry

机译:液-液临界中的阳-阳异常:绝热扫描量热法的实验证据

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Using adiabatic scanning calorimetry, we have found the first experimental evidence of the Yang-Yang anomaly in liquid-liquid criticality from high-resolution two-phase isobaric heat capacity measurements for the binary mixture 3-pentanol + nitromethane. The results suggest a rather strong effect. The critical amplitude of the partial molar heat capacity is higher for the component with larger molecular volume, in accordance with the predictions of complete scaling as obtained from the customary observed asymmetric behavior of the coexistence-curve diameter. This consolidates complete scaling as the true formulation of fluid-fluid criticality. The quantitative analysis indicates that molecular size is not the only microscopic factor at play in asymmetric liquid-liquid criticality.
机译:使用绝热扫描量热法,我们从高分辨率二相等压热容量的二元混合物3-戊醇+硝基甲烷的高分辨率两相中发现了Yang-Yang异常在液-液临界中的第一个实验证据。结果表明效果相当强。根据从常规观察到的共存曲线直径的不对称行为获得的完全结垢的预测,对于具有较大分子体积的组分,部分摩尔热容的临界振幅更高。这巩固了完整的缩放比例,成为流体临界流体的真实配方。定量分析表明,分子大小并不是非对称液-液临界中起作用的唯一微观因素。

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