Clusters and nanoscale materials give rise to properties and behaviour that are governed by size restrictions, and hence display features directly attributable to quantum confinement. Thus they represent ideal media for observing and studying quantum phenomena. This book presents and evaluates some of the latest developments in this area of basic research. Each of the chapters focuses on selected aspects of the field, and the authors endeavour to display the breadth of the subject by presenting some of the important recent advances that have been made through the use of new experimental techniques and theoretical approaches. …mehr
Clusters and nanoscale materials give rise to properties and behaviour that are governed by size restrictions, and hence display features directly attributable to quantum confinement. Thus they represent ideal media for observing and studying quantum phenomena. This book presents and evaluates some of the latest developments in this area of basic research. Each of the chapters focuses on selected aspects of the field, and the authors endeavour to display the breadth of the subject by presenting some of the important recent advances that have been made through the use of new experimental techniques and theoretical approaches.
Shiv N. Khanna, Virginia Commonwealth University, Richmond, VA/USA / Albert W. Castleman, The Pennsylvania State University, University Park, PA/USA
Inhaltsangabe
1 Cluster and Nanoscale Science: Overview and Perspective.- 2 Quantum and Classical Size Effects in Thermodynamic Properties.- 3 Photoelectron Spectroscopy.- 4 Quantum Tunneling of the Magnetization in Molecular Nanoclusters.- 5 Magnetism of Free and Supported Metal Clusters.- 6 Magnetism in Free Clusters and in Mn12O12-Acetate Nanomagnets.- 7 Size Effects in Catalysis by Supported Metal Clusters.- 8 Delayed Ionization.- 9 Cluster Dynamics: Influences of Solvation and Aggregation.- 10 Future Directions.
1 Cluster and Nanoscale Science: Overview and Perspective.- 2 Quantum and Classical Size Effects in Thermodynamic Properties.- 3 Photoelectron Spectroscopy.- 4 Quantum Tunneling of the Magnetization in Molecular Nanoclusters.- 5 Magnetism of Free and Supported Metal Clusters.- 6 Magnetism in Free Clusters and in Mn12O12-Acetate Nanomagnets.- 7 Size Effects in Catalysis by Supported Metal Clusters.- 8 Delayed Ionization.- 9 Cluster Dynamics: Influences of Solvation and Aggregation.- 10 Future Directions.
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