I. An Overview of Mixed-Valency.- to Mixed-Valence Chemistry.- Descriptive Chemistry of Mixed-Valence Compounds.- Synthetic Approaches to Mixed-Valence Chemistry.- II. Models for the Mixed-Valence State.- Electron Transfer in Mixed-Valence Compounds.- A Vibronic Coupling Model for Mixed-Valence Compounds and its Application to Real Systems.- Electron Delocalization, Structure and Dynamics in Mixed-Valence Systems.- III. Experimental Probes to Mixed-Valence Compounds.- Magnetism of Mixed-Valence Compounds.- Applications of the Mössbauer Effect to the Study of Mixed-Valence Compounds.- Electronic, Raman, and Resonance-Raman Spectroscopic Studies of Mixed-Valence Complexes.- IV. Classes of Mixed-Valence Materials.- Mixed-Valence Minerals of Iron and Titanium: Correlations of Structural, Mössbauer and Electronic Spectral Data.- Mixed-Valency in Discrete and Condensed Transition Metal Cluster Species With Classical Ligands.- Heteropoly Blues.- Linear Chain Mixed-Valence Systems with Direct Metal-Metal Interactions.- The Verwey Transition Revisited.- Polymetallic Centers in Biology.- Mixed-Valence in the Organic Solid State.- Photoelectron Spectroscopy of Mixed-Valence Compounds.- List of Contribution to the Discussion Sessions.
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