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Review Article

Theories of the Thermodynamic Properties of Pure Molten Salts

Pages 121-141 | Published online: 28 Mar 2007

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DavidM. Heyes & LeslieV. Woodcock. (1986) Clustering and some other physical effects of van der Waals potentials. Molecular Physics 59:6, pages 1369-1388.
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G.M. Abernethy & M. Silbert. (1982) Entropy Calculations for Charged Spheres and the Entropy of Molten Salts. Physics and Chemistry of Liquids 11:3, pages 195-205.
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Stephen Scott Parker, A. Long, C. Lhermitte, S. Vogel, M. Monreal & J.M. Jackson. (2022) Thermophysical properties of liquid chlorides from 600 to 1600 K: Melt point, enthalpy of fusion, and volumetric expansion. Journal of Molecular Liquids 346, pages 118147.
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Yizhak MarcusYizhak Marcus. 2016. Ionic Liquid Properties. Ionic Liquid Properties 25 98 .
Wei Shi, Krishnan Damodaran, Hunaid B. Nulwala & David R. Luebke. (2012) Theoretical and experimental studies of water interaction in acetate based ionic liquids. Physical Chemistry Chemical Physics 14:45, pages 15897.
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R. V. G. Rao & M. Bhattacharyya. (1987) Caesium–Gold as an Ionic Alloy and Its Structural Properties. Physica Status Solidi (a) 103:1, pages 79-84.
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David M. Heyes. (1984) Molecular dynamics of ionic solid and liquid surfaces. Physical Review B 30:4, pages 2182-2201.
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Klaus Tödheide. (2003) The Influence of Density and Temperature on the Properties of Pure Molten Salts. Angewandte Chemie International Edition in English 19:8, pages 606-619.
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Klaus Tödheide. (1980) Der Einfluß von Dichte und Temperatur auf die Eigenschaften reiner geschmolzener Salze. Angewandte Chemie 92:8, pages 612-625.
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K. Tödheide. 1980. Thermodynamic and Transport Properties of Organic Salts. Thermodynamic and Transport Properties of Organic Salts 3 27 .

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