Non-metal—metal transition in molten potassium-potassium—halide solutions
Author:
Affiliation:
1. a GNSM-CNR, Istituto di Fisica Teorica dell'Università , Trieste , Italy
2. b The International Centre for Theoretical Physics , Trieste , Italy
Publisher
Informa UK Limited
Subject
General Physics and Astronomy,General Chemical Engineering
Link
https://www.tandfonline.com/doi/pdf/10.1080/13642818508240572
Reference27 articles.
1. Exactly Solvable Microscopic Geometries and Rigorous Bounds for the Complex Dielectric Constant of a Two-Component Composite Material
2. Bredig , M. A. 1964. Molten Salt Chemistry, Edited by: Blander , M. 367New York: Wiley-Interscience.
3. The Electrical Conductivity of Solutions of Alkali Metals in their Molten Halides1
4. THE ELECTRICAL CONDUCTIVITY OF SOLUTIONS OF METALS IN THEIR MOLTEN HALIDES. II. SODIUM—SODIUM IODIDE, POTASSIUM—POTASSIUM IODIDE, AND POTASSIUM—POTASSIUM FLUORIDE1
5. Electrical Conductance of Solutions of Salts in Liquid Metals. II. Potassium Fluoride and Bromide in Potassium
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1. Bulk Peculiarities: Metal–Nonmetal Transitions;Springer Series in Solid-State Sciences;2011
2. The electronic structure of metal-molten salt solutions: A tight-binding approach;The Journal of Chemical Physics;1997-05
3. Nonmetal-metal transition in metal–molten-salt solutions;Physical Review B;1996-05-15
4. Electron localization and the non-metal-metal transition in alkali-alkali-halide solutions;Il Nuovo Cimento D;1996-05
5. Hot electrons and the approach to metallic behaviour in K x (KCl) 1 − x;Europhysics Letters (EPL);1996-03-01
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