Wie kann man heute in seinem Fachgebiet den Überblick behalten, obwohl die Spezialisierung in der Wissenschaft mehr und mehr zunimmt? Die "Highlights in Inorganic Chemistry" wollen dabei helfen. Die Anorganische Chemie gliedert sich in Molekülchemie, Festkörperchemie, Hauptgruppenchemie, Materialwissenschaften und viele weitere Teilbereiche auf. Viel tut sich Jahr für Jahr in jedem dieser Forschungsschwerpunkte! Zu jedem dieser Disziplinen präsentieren Wissenschaftler aus aller Welt in diesem Buch interessante und aktuelle Beiträge. Jeder, der einen Blick über den eigenen Tellerrand hinaus riskieren will, sollte dieses Buch sein Eigen nennen.…mehr
Wie kann man heute in seinem Fachgebiet den Überblick behalten, obwohl die Spezialisierung in der Wissenschaft mehr und mehr zunimmt? Die "Highlights in Inorganic Chemistry" wollen dabei helfen.
Die Anorganische Chemie gliedert sich in Molekülchemie, Festkörperchemie, Hauptgruppenchemie, Materialwissenschaften und viele weitere Teilbereiche auf. Viel tut sich Jahr für Jahr in jedem dieser Forschungsschwerpunkte! Zu jedem dieser Disziplinen präsentieren Wissenschaftler aus aller Welt in diesem Buch interessante und aktuelle Beiträge. Jeder, der einen Blick über den eigenen Tellerrand hinaus riskieren will, sollte dieses Buch sein Eigen nennen.
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Autorenporträt
Gerd Meyer studied chemistry at the Justus-Liebig University in Giessen under the supervision of Rudolf Hoppe. He gained his doctorate in 1976, and in 1980 worked with John D. Corbett at Iowa State University. In 1982 he gained his lecturing qualification in inorganic chemistry at Giessen, becoming a Full Professor at the University of Hanover in 1988. He subsequently moved to the same position at the University of Cologne in 1996. Professor Meyer's main research interests focus on solid-state and coordination chemistry of rare-earth elements and transition elements.
Dieter Naumann studied chemistry at the Rheinisch-Westfaelische Technische Hochschule (RWTH) at Aachen. His diploma (1967) and doctoral theses (1969) were supervised by Martin Schmeisser. Research on perfluoroalkyl iodine compounds led to his lecturing qualification in inorganic chemistry at the University of Dortmund in 1975. From 1967 until 1989 he was a professor in Dortmund, becoming a Full Professor of Inorganic and Analytical Chemistry at the University of Cologne in 1989. His main research interests are syntheses of fluoroorgano groups 10 to 18 element compounds.
Lars Wesemann studied chemistry at the Rheinisch-Westfaelische Technische Hochschule in Aachen. His diploma and doctoral theses were supervised by Gerhard E. Herberich, and he gained the latter in 1990. After that he worked in Dietmar Seyferth's group at MIT for one year before returning to the RWTH Aachen. Independent research led him to his lecturing qualification in inorganic chemistry in 1997. He was a Professor of Inorganic Chemistry at the University of Cologne from 1999 until 2003, and is now a Full Professor at the University of Tbingen.
Inhaltsangabe
- On the Track of Reaction Mechanisms: Characterization and Reactivity of Metal Atom Dimers - Noble Gas Hydride Compounds - Polycationic Clusters of the Heavier Group 15 and 16 Elements - Metal-Catalyzed Dehydrocoupling Routes to Rings, Chains and Macromolecules Based on Elements from Groups 13 and 15 - Chemistry with Poly- and Perfluorinated Alkoxyaluminates: Gas Phase Cations in the Condensed Phase? - Aluminium(I) Chemistry - Divalent Scandium - Rare-Earth Metal-Rich Tellurides. A Spectrum of Solid State Chemistry, Metal-Metal Bonding and Principles - Zintl Phases of Tetralides - Old Problems and Their Solution - Nonclassical Sb-Sb Bonding in Transition Metal Antimonides - Transition Metal Organosulfur Coordination Polymers - Molybdenum(Tungsten)-Copper(Silver)-Thiolates: Rationally Designed Syntheses from "Reactive" Building Blocks - Reactivity of Unsaturated Organic Compounds at Ruthenium(II) Centers - The Relevance of Metallacyclopentatriene Intermediates - Osmium(VIII) Oxide and Oxide Fluoride Chemistry - Liquid-Crystalline Lanthanide Complexes - Rare Earth Borates: An Overview from the Structural Chemistry Aspect - Ordered Siliceous Mesostructured Materials: Synthesis and Morphology Control - Local Crystal Chemistry, Structured Diffuse Scattering and Inherently Flexible Framework Structures (Silicas, Zeolites, Perovskites, Fresnoites,...) - Non-Oxide Optical Glasses: Properties, Structures and Applications
- On the Track of Reaction Mechanisms: Characterization and Reactivity of Metal Atom Dimers - Noble Gas Hydride Compounds - Polycationic Clusters of the Heavier Group 15 and 16 Elements - Metal-Catalyzed Dehydrocoupling Routes to Rings, Chains and Macromolecules Based on Elements from Groups 13 and 15 - Chemistry with Poly- and Perfluorinated Alkoxyaluminates: Gas Phase Cations in the Condensed Phase? - Aluminium(I) Chemistry - Divalent Scandium - Rare-Earth Metal-Rich Tellurides. A Spectrum of Solid State Chemistry, Metal-Metal Bonding and Principles - Zintl Phases of Tetralides - Old Problems and Their Solution - Nonclassical Sb-Sb Bonding in Transition Metal Antimonides - Transition Metal Organosulfur Coordination Polymers - Molybdenum(Tungsten)-Copper(Silver)-Thiolates: Rationally Designed Syntheses from "Reactive" Building Blocks - Reactivity of Unsaturated Organic Compounds at Ruthenium(II) Centers - The Relevance of Metallacyclopentatriene Intermediates - Osmium(VIII) Oxide and Oxide Fluoride Chemistry - Liquid-Crystalline Lanthanide Complexes - Rare Earth Borates: An Overview from the Structural Chemistry Aspect - Ordered Siliceous Mesostructured Materials: Synthesis and Morphology Control - Local Crystal Chemistry, Structured Diffuse Scattering and Inherently Flexible Framework Structures (Silicas, Zeolites, Perovskites, Fresnoites,...) - Non-Oxide Optical Glasses: Properties, Structures and Applications
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