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Theoretical consideration of the anomalous temperature dependence of the surface tension of pure liquid gallium

机译:纯液态镓表面张力与温度的反常关系的理论考虑

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摘要

The surface tension of pure liquid gallium in the temperature range 303–503 K (303 K is the melting point) was previously measured using the noninvasive method of capillary wave spectroscopy (CWS). The result of this experiment showed that the value of surface tension increases from 303 to 345 K indicating a negative surface excess entropy (S σ), and decreases linearly from ~345 to 503 K confirming a negative slope, and thus a positive S σ. This unusual behavior of Ga is not known for other liquid metals such as Bi, Pb, Hg, Sn and Al. The reported experimental behavior is modeled here. A theoretical equation for calculating the surface tension of liquid Ga, based upon formulating a proper partition function that includes the rotational part, is derived and described. The theory predicted no maximum in the temperature-dependence of the surface tension, as seen in the experiment, where the analysis was done over a large temperature range (325–503 K). The value obtained from this mathematical expression indicates that the temperature variation of surface tension has no positive slope within the temperature range 303–345 K. At T > 345 K, the surface tension shows the usual linear temperature-dependence with a negative slope. Therefore, the equation is only applicable for the latter temperature range. A comparison between the theoretical and experimental values of surface tension of liquid Ga is discussed.
机译:以前,使用非侵入式毛细管波谱法(CWS)测量了温度范围为303-503 K(熔点为303 K)的纯液态镓的表面张力。实验结果表明,表面张力的值从303 K增大到345 K,表明表面负熵(Sσ),而从〜345线性减小到503 K,从而确认了负斜率,因此,正Sσ。对于其他液态金属(例如Bi,Pb,Hg,Sn和Al),Ga的这种异常行为是未知的。报告的实验行为在此处建模。推导并描述了用于计算液体Ga的表面张力的理论方程式,该方程式基于公式化包括旋转部分的适当分配函数。如在实验中看到的那样,该理论预测表面张力的温度依赖性没有最大值,而在较大的温度范围(325–503 K)中进行了分析。从该数学表达式获得的值表明,表面张力的温度变化在303–345 K的温度范围内没有正斜率。在T> 345 K时,表面张力显示出通常的线性温度依赖性,且具有负斜率。因此,该方程式仅适用于后一个温度范围。讨论了液体Ga表面张力的理论值与实验值之间的比较。

著录项

  • 来源
    《Theoretical Chemistry Accounts》 |2010年第6期|443-448|共6页
  • 作者

    Ahmed Ayyad; Fathi Aqra;

  • 作者单位

    Department of Chemistry Faculty of Science and Technology Hebron University P.O. Box 40 Hebron West Bank Palestine;

    Department of Chemistry Faculty of Science and Technology Hebron University P.O. Box 40 Hebron West Bank Palestine;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Surface chemistry; Surface tension; Gallium;

    机译:表面化学;表面张力;镓;

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