Ionic Liquids, Molten Salts, and Polyelectrolytes

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106,99 

Proceedings of the International Conference Held in Berlin (West), June 22-25,1982, Lecture Notes in Physics 172

ISBN: 3540119523
ISBN 13: 9783540119524
Herausgeber: K -H Bennemann/F Brouers/D Quitmann
Verlag: Springer Verlag GmbH
Umfang: vii, 256 S., 2 s/w Illustr., 256 p. 2 illus.
Erscheinungsdatum: 01.11.1982
Auflage: 1/1982
Produktform: Kartoniert
Einband: KT
Artikelnummer: 5967699 Kategorie:

Beschreibung

InhaltsangabeIntroductory address.- Ionic liquids.- The metal-nonmetal transition in ionic liquids.- Collective dynamics and transport in binary ionic mixtures.- Thermodynamics of Ionic Liquids.- The structure of ionic melts.- Structural properties of molten-salt systems.- Discontinuities of some properties of sodium ammonia solutions above the normal miscibility gap.- The surface properties of molten salts.- Charge ordering in molten salts and in some liquid semiconducting alloys.- Hypersonic relaxation in a glass forming KNO3-Ca(NO3)2 mixture.- The knight shift, resistivity and thermochemical properties of compound forming molten alloys described by chemical thermodynamics.- Electronic and structural properties of some compound-forming alkali-based alloys.- A simple model for compound forming liquid alloy systems.- 8Li SPIN-Lattice relaxation in the liquid alloys Li-Bi and Li-Pb.- Correlation effects in metal ammonia systems.- Tetrahedrally coordinated ionic liquids - anomalous transport properties and geophysical significance.- Interdiffusion in a quasi-ionic liquid alloy.- Mott trasition in liquid gold-alkali alloys.- Self-motion in charged liquids.- Properties of Na/S and LiAl/FeS high-performance batteries with molten salt electrolyte.- Static and dynamic properties of polyelectrolytes.- Theory of polyelectrolyte conformations.- Dynamical properties of charged spherical brownian particles.- Nucleic acids and polyelectrolyte theory.- Diffusion of charged colloidal particles: Spatial and dynamic correlations.- Counterion binding in polyelectrolyte theory.- Effective protein-protein potential in membranes.- Equilibrium polymerization of stiff polymers.

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