HEAT CAPACITY AND OTHER THERMODYNAMIC FUNCTIONS OF XENON HEXAFLUORIDE FROM 5 TO 350 DEGREES K

被引:31
作者
SCHREINER, F
OSBORNE, DW
MALM, JG
MCDONALD, GN
机构
[1] Ar Gonne National Laboratory, Areonne, IL
关键词
D O I
10.1063/1.1671875
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Heat-capacity measurements have been made on a 53-g sample of XeF 6 between 5 and 35O°K. Melting-point measurements indicated 0.16 mole % liquid-soluble, solid-insoluble impurity. Two regions of anomalously high heat capacity and long equilibrium times were observed, near 253.8°K and near 291.8°K, which are believed to arise from structural changes in solid XeF6. The excess enthalpies associated with these regions are 972 and 1226 J mole-1, respectively. The melting point is 322.63±0.10°K, and the enthalpy of fusion is 5743 J mole -1. The vapor pressure of the liquid is given by log 10PmmΠg= -6170.88/jT-23.67815 Iog10T+80. 77778 from 323 to 350°K. The second virial coefficient was found to be -955 cm3 mole-1 at 346°K. Densities of the solid were determined at several temperatures by helium displacement. The high entropy of vaporization (136.9 J°K-1.mole-1) at the boiling point (348.72° K), as well as the high and rapidly rising heat capacity of the liquid, suggest that the liquid is associated. Thermodynamic functions of the condensed phases are tabulated at various temperatures. At 298.15°K the values of Cp°, S°, Π°-Π0°, and (G°-H 0°)/T for solid XeF6 are 171.59 J°K-1 mole-1, 210.38 J°K-1 mole-1, 30999 J mole-1, and -106.41 J°K-1·mole-1, respectively. At 335°K the standard entropy S° is 255.5 J°K -1·mole-1 for liquid XeF6 and 402.6 J°K-1·mole-1 for the gas.
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页码:4838 / +
页数:1
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