Direct Synthesis of Metal Complexes /
"Direct Synthesis of Metal Complexes provides in-depth coverage of the direct synthesis of coordination and organometallic compounds. The work is primarily organized by methods, but also covers highly relevant complexes, such as metal-polymer coordination compounds. This updated reference discu...
Clasificación: | Libro Electrónico |
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Autor principal: | |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
Amsterdam, Netherlands :
Elsevier,
[2018]
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Edición: | First edition. |
Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Intro; Title page; Table of Contents; Copyright; Dedication; Contributors; Foreword; Preface; Part 1: History and State of the Art of the "Direct Synthesis" Methods; Educational and Historical Aspects of Direct Synthesis of Metal Complexes; Abstract; 1 Introduction; 2 Historical Development of Direct Synthesis; 3 Pedagogical Value: Why Incorporate Direct Synthesis in the Undergraduate Laboratory?; 4 Ultrasonic and Microwave Mediated Direct Synthesis; 5 Conclusion; Recent Advances in Direct Synthesis of Organometallic and Coordination Compounds; Abstract; Acknowledgment; 1 Indirect Synthesis.
- 2 Direct Synthesis3 Group I; 4 Group 7; 5 Group 8; 6 Group 9; 7 Group 10; 8 Group 11; 9 Group 12; 10 Group 13; 11 Group 14; 12 Group 15; 13 Group 16; 14 Summary and Outlook; Direct Electrochemical Synthesis of Metal Complexes; Abstract; 1 Basic Concepts; 2 Electrochemical Thermodynamics; 3 Electrochemical Kinetics; 4 Reaction Mechanisms; 5 Electrochemical Cells; 6 Solvents and Supporting Electrolytes; 7 Metals; 8 Ligands; 9 Conclusions and Further Outlook; Cryochemical Co-condensation of Metal Vapors and Organic Compounds; Abstract; 1 Introduction.
- 2 Formation of Metal Organosols Under the Low-temperature Vapor Co-condensation3 Preparation of Metal-Organic Compounds via the Metal-Vapor Cryosynthesis; 4 Synthesis of Catalysts by Low-temperature Co-condensation of Metal Vapors and Organic Compounds; 5 Conclusions; Part 2: "Direct" Methods in the Preparation of Distinct Types of Complexes; Direct Synthesis of Heterometallic Complexes; Abstract; 1 Introduction; 2 Salt Route; 3 Ammonium Salt Route; 4 Conclusions; New Trends in the Direct Synthesis of Phthalocyanine/Porphyrin Complexes; Abstract; Acknowledgments; 1 Introduction.
- 2 Classical Approach of Phthalocyanine/Porphyrin Complexes Direct Synthesis3 New Methods of Phthalocyanine/Porphyrin Complexes Direct Synthesis; Increasing the Rate of the Direct Synthesis Complex Compounds; Abstract; 1 The Accumulation of Metallic Elements in the Technological Waste; 2 The Use of Direct Synthesis of Complex Compounds for Extraction of Metallic Elements from Industrial Waste; 3 Effect on the Rate, Selectivity, and Yield of the Donor-Acceptor Interaction Product of a Number of Physical and Chemical Factors.
- 4 Accelerate the Direct Synthesis of Complex Compounds When Moving and Delivery of the Ligand Molecule in the Surfactant Micelles5 Effect of Porous Silica on Coordinating the Interaction; 6 Contact the Kinetic Characteristics of the Direct Synthesis of Complex Connections with the Debye Temperature of the Metal and Coefficient Gr�uneisen; Part 3: "Direct Synthesis" and Nanotechnology; Direct Synthesis of Nanomaterials: Building Bridges Between Metal Complexes and Nanomaterials; Abstract; 1 Introduction; 2 Analogies Among Metal Complexes and Nanomaterials; 3 Direct Synthesis of Nanomaterials.