The thermodynamics of ammonium scheelites. III. An analysis of the heat capacity and related data of deuterated ammonium perrhenate ND4ReO4
- 15 November 1986
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 85 (10) , 5963-5970
- https://doi.org/10.1063/1.451509
Abstract
An analysis of the heat capacity of deuterated and undeuterated NH4ReO4 has been carried out in which the effects of the anisotropy of the thermal expansion have been considered, an approach hitherto not used for ammonium compounds. In the ammonium scheelites, the axial thermal expansion coefficients are very large, but of opposite sign, and as a result the volume of the scheelite lattice is nearly independent of temperature. It is shown that the correction from constant stress to constant strain results in a major contribution to the heat capacity of this highly anisotropic lattice. The difference between the experimental and calculated values of heat capacity, referred to as ΔCp, is expressed as the sum of the contributions from the anisotropy and the rotational heat capacity. The results of the analysis show that the rotational contribution is much smaller then previously thought. However, the exact contribution of the anisotropy cannot be calculated at this time because the elastic constants are not known. In calculating the heat capacity, maximum use has been made of external optical mode frequencies derived from spectroscopic measurementsKeywords
This publication has 15 references indexed in Scilit:
- The thermodynamics of ammonium scheelites II. Heat capacity of deuterated ammonium perrhenate ND4ReO4 from 7.5 to 320 KThe Journal of Chemical Thermodynamics, 1986
- Thermal expansion coefficients of NH4ReO4 and NH4IO4 down to 58 KThe Journal of Chemical Physics, 1985
- Thermal expansion of cubic ammonium compoundsThe Journal of Chemical Physics, 1983
- The temperature dependence of the low frequency modes in the Raman spectra of ammonium perrhenate and potassium perrhenateJournal of Raman Spectroscopy, 1981
- The heat capacity and thermodynamic properties of potassium perrhenate and ammonium perrhenate from 8 to 304 KThe Journal of Chemical Physics, 1980
- The temperature dependence of the Raman spectrum of ammonium perrhenateJournal of Raman Spectroscopy, 1978
- Nuclear quadrupole resonance and thermal expansion in perrhenate saltsJournal of Magnetic Resonance (1969), 1976
- Vibrational Spectra of Ammonium and Other Scheelite-Type PerrhenatesThe Journal of Chemical Physics, 1972
- Spektroskopische Untersuchungen an einigen wasserfreien PerrhenatenZeitschrift für anorganische und allgemeine Chemie, 1968
- Structure of the Aqueous Pertechnetate Ion by Raman and Infrared Spectroscopy. Raman and Infrared Spectra of Crystalline KTcO4, KReO4, Na2MoO4, Na2WO4, Na2MoO4·2H2O, and Na2WO4·2H2OThe Journal of Chemical Physics, 1964