Chemical Equilibria Bases For Oxide And Organic Superconductors
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A new perspective on superconductivity
This book offers a perspective on superconductivity that focuses on chemical equilibria as the basis for the conceptual difference between chemistry and physics. It shows how chemical equilibria involving changes in valence states with small separations in energies render oxides nonstoichiometric; similarly, in organic conductors, the energies of valence states give mixed valencies equilibria. The author proposes that mixed valency holds the key to similarities between organic compounds and oxides.
Chemical Equilibria Bases for Oxide and Organic Superconductors:
This volume presents an excellent selection of topics rather than a review of articles, providing an intriguing and insightful treatment of oxide and organic superconductors for professionals, teaching faculty, and graduate students in solid state chemistry, materials science, and physics.
R. J. Thorn, PhD, is Retiree Resident Associate at Argonne National Laboratory. In a distinguished career that has spanned half a century, he has published scores of articles in the journals of chemistry and physics and organized or chaired numerous conferences and symposia. He is a member of the editorial board of the journal High Temperature Science and Materials and a Fellow of the American Association for the Advancement of Science.