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Surface Tension of Liquid Alkali, Alkaline, and Main Group Metals: Theoretical Treatment and Relationship Investigations

机译:液态碱金属,碱金属和主族金属的表面张力:理论处理和关系研究

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摘要

An improved theoretical method for calculating the surface tension of liquid metals is proposed. A recently derived equation that allows an accurate estimate of surface tension to be made for the large number of elements, based on statistical thermodynamics, is used for a means of calculating reliable values for the surface tension of pure liquid alkali, alkaline earth, and main group metals at the melting point, In order to increase the validity of the model, the surface tension of liquid lithium was calculated in the temperature range 454 K to 1300 K (181 °C to 1027 °C), where the calculated surface tension values follow a straight line behavior given by γ = 441 – 0.15 (T-Tm) (mJ m−2). The calculated surface excess entropy of liquid Li (–dγ/dT) was found to be 0.15 mJ m−2 K−1, which agrees well with the reported experimental value (0.147 mJ/m2 K). Moreover, the relations of the calculated surface tension of alkali metals to atomic radius, heat of fusion, and specific heat capacity are described. The results are in excellent agreement with the existing experimental data.
机译:提出了一种改进的计算液态金属表面张力的理论方法。使用最近导出的方程式,可以基于统计热力学对大量元素进行精确的表面张力估计,用于计算纯液态碱金属,碱土金属和主要矿物表面张力的可靠值的方法为了提高模型的有效性,在454 K至1300 K(181°C至1027°C)的温度范围内计算了液态锂的表面张力,其中计算出的表面张力值为遵循由γ= 441 – 0.15(T-Tm)(mJ m −2 )给出的直线行为。计算得出的液态Li的表面过量熵(–dγ / dT)为0.15 mJ m -2 K -1 ,与报道的实验值非常吻合( 0.147 mJ / m 2 K)。此外,描述了所计算的碱金属的表面张力与原子半径,熔化热和比热容之间的关系。结果与现有实验数据非常吻合。

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