Ionic Soft Matter: Modern Trends in Theory and Applications (eBook)

Proceedings of the NATO Advanced Research Workshop on Ionic Soft Matter: Modern Trends in Theory and Application Lviv, Ukraine, 14-17 April, 2004
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2006 | 2005
XI, 418 Seiten
Springer Netherland (Verlag)
978-1-4020-3659-0 (ISBN)

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Recently there have been profound developments in the understanding and interpretation of liquids and soft matter centered on constituents with sho- range interactions. Ionic soft matter is a class of conventional condensed soft matter with prevailing contribution from electrostatics and, therefore, can be subject to possible long-range correlations among the components of the - terial and in many cases crucially affecting its physical properties. Among the most popular representatives of such a class of materials are natural and synthetic saline environments, like aqueous and non-aqueous electrolyte - lutions and molten salts as well as variety of polyelectrolytes and colloidal suspensions. Equally well known are biological systems of proteins. All these systems are examples of soft matter strongly in?uenced, if not dominated, by long-range forces. For more than half of century the classical theories by Debye and Hückel as well as by Derjaguin, Landau, Verwey and Owerbeek (DLVO) have been at the basis of theoretical physical chemistry and chemical engineering. The substantial progress in material science during last few decades as well as the advent of new instrumentation and computational techniques made it apparent that in many cases the classical theories break down. New types of interactions (e.g. hydrodynamic, entropic) have been discovered and a number of questions have arisen from theoretical and experimental studies. Many of these questions still do not have de?nite answers.
Recently there have been profound developments in the understanding and interpretation of liquids and soft matter centered on constituents with sho- range interactions. Ionic soft matter is a class of conventional condensed soft matter with prevailing contribution from electrostatics and, therefore, can be subject to possible long-range correlations among the components of the - terial and in many cases crucially affecting its physical properties. Among the most popular representatives of such a class of materials are natural and synthetic saline environments, like aqueous and non-aqueous electrolyte - lutions and molten salts as well as variety of polyelectrolytes and colloidal suspensions. Equally well known are biological systems of proteins. All these systems are examples of soft matter strongly in?uenced, if not dominated, by long-range forces. For more than half of century the classical theories by Debye and Huckel as well as by Derjaguin, Landau, Verwey and Owerbeek (DLVO) have been at the basis of theoretical physical chemistry and chemical engineering. The substantial progress in material science during last few decades as well as the advent of new instrumentation and computational techniques made it apparent that in many cases the classical theories break down. New types of interactions (e.g. hydrodynamic, entropic) have been discovered and a number of questions have arisen from theoretical and experimental studies. Many of these questions still do not have de?nite answers.

Dedication.- Preface.-
Field theoretical approach for ionic systems; D. di Caprio, J. Stafiej.- Induced charge computation method; D. Boda et al.-
Concept of ion association in the theory of electrolyte solutions; M. Holovko.-
Towards the role of the range of intermolecular interactions; I. Nezbeda , J. Kolafa.-
Collective dynamics in ionic fluids; I. Mryglod et al.-
Criticality of ionic liquids in solution; W. Schroer.-
Liquid/vapor criticality in Coulombic and related fluids; P.J. Camp et al.-
Macroions in solution; V. Vlachy et al.-
Anomalous small-angle X-ray scattering in rod-like polyelectrolytes; M. Ballauff.-
Macroions under confinement; A.D. Trokhymchuk.-
Grain interaction and ordering in a dusty plasmas; O. Bystrenko.-
Dipolar fluid inclusions in charged matrices; M.J. Fernaud, E. Lomba .-
Solute ions at ice/water interface; A.D.J. Haymet et al.-
Proton transport in polymer electrolyte fuel cell membranes; E. Spohr.-
DNA saline solutions near surfaces; B.M. Pettit.-
Charge transport in highly-radioactive substance; O. Zhydkov.-
Participants.- Index.-

Erscheint lt. Verlag 30.6.2006
Reihe/Serie Nato Science Series II:
NATO Science Series II: Mathematics, Physics and Chemistry
NATO Science Series II: Mathematics, Physics and Chemistry
Zusatzinfo XI, 418 p.
Verlagsort Dordrecht
Sprache englisch
Themenwelt Naturwissenschaften Biologie
Naturwissenschaften Chemie
Naturwissenschaften Physik / Astronomie Atom- / Kern- / Molekularphysik
Naturwissenschaften Physik / Astronomie Festkörperphysik
Naturwissenschaften Physik / Astronomie Thermodynamik
Technik
Schlagworte Adsorption • Biophysics • Chemistry • Dynamics • Surfaces • X-Ray
ISBN-10 1-4020-3659-0 / 1402036590
ISBN-13 978-1-4020-3659-0 / 9781402036590
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