Atomic Clusters: From Gas Phase to Deposited: The Chemical Physics of Solid Surfaces, cartea 12
D. P. Woodruffen Limba Engleză Hardback – 17 apr 2007
* Contributions from leading experts in solid surfaces research* Cluster science is concerned with the properties of materials on the nano-metre scale* Brings together work on both free (gas-phase) clusters and those deposited on surfaces
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Specificații
ISBN-13: 9780444527561
ISBN-10: 0444527567
Pagini: 648
Dimensiuni: 165 x 240 x 35 mm
Greutate: 1.33 kg
Ediția:New.
Editura: ELSEVIER SCIENCE
Seria The Chemical Physics of Solid Surfaces
ISBN-10: 0444527567
Pagini: 648
Dimensiuni: 165 x 240 x 35 mm
Greutate: 1.33 kg
Ediția:New.
Editura: ELSEVIER SCIENCE
Seria The Chemical Physics of Solid Surfaces
Public țintă
This is a research-led volume directed to the research community in academic science but also highly relevant to areas of applied physics and chemistry.Cuprins
Chapter 1, Size Effects in the Chemistry of Small Clusters ((M. Arenz et al.).
Chapter 2. Chemical reactivity and catalytic properties of size-selected gas phase metal clusters (S.M. Lang et al.).
Chapter 3. Probing the Unique Size-Dependent Properties of Small Au Clusters, Au Alloy Clusters, and CO Chemisorbed Au Clusters in the Gas Phase(H.-J. Zhai et al.).
Chapter 4. Aun and Agn (n=1–8) Nanocluster Catalysts: Gas Phase Reactivity to Deposited Structures (S.K. Buratto et al.).
Chapter 5. Oxide-supported metal clusters (M. Chen, D.W. Goodman).
Chapter 6. Magic numbers for shells of electrons and shells of atoms in binary clusters (S. Neukermans et al.).
Chapter 7. Computational electron spectroscopy of gas phase metal clusters (J. Jellinek, P.H. Acioli).
Chapter 8. Vibrational Spectroscopy of Gas-Phase Clusters and Complexes (K.R. Asmis et al.).
Chapter 9. Trapped ion electron diffraction: structural evolution of silver and gold clusters (J.H. Parks, X. Xing).
Chapter 10. Superatoms: Building blocks of new materials (A.W. Castleman, S. Khanna).
Chapter 11. Magnetic properties of 2D islands on single crystal metal surfaces (H. Brune, S. Rusponi).
Chapter 12. Electronic structure and magnetic properties of small deposited transition metal clusters (W. Wurth, M. Martins).
Chapter 13. Magnetic properties of deposited and embedded clusters (C. Binns).
Chapter 14. Theory of magnetic clusters and nanostructures at surfaces (G.M. Pastor, J.D. Dávilla).
Chapter 15. Modelling the structure and dynamics of metal nanoclusters deposited on
graphite (R. Smith et al.).
Chapter 2. Chemical reactivity and catalytic properties of size-selected gas phase metal clusters (S.M. Lang et al.).
Chapter 3. Probing the Unique Size-Dependent Properties of Small Au Clusters, Au Alloy Clusters, and CO Chemisorbed Au Clusters in the Gas Phase(H.-J. Zhai et al.).
Chapter 4. Aun and Agn (n=1–8) Nanocluster Catalysts: Gas Phase Reactivity to Deposited Structures (S.K. Buratto et al.).
Chapter 5. Oxide-supported metal clusters (M. Chen, D.W. Goodman).
Chapter 6. Magic numbers for shells of electrons and shells of atoms in binary clusters (S. Neukermans et al.).
Chapter 7. Computational electron spectroscopy of gas phase metal clusters (J. Jellinek, P.H. Acioli).
Chapter 8. Vibrational Spectroscopy of Gas-Phase Clusters and Complexes (K.R. Asmis et al.).
Chapter 9. Trapped ion electron diffraction: structural evolution of silver and gold clusters (J.H. Parks, X. Xing).
Chapter 10. Superatoms: Building blocks of new materials (A.W. Castleman, S. Khanna).
Chapter 11. Magnetic properties of 2D islands on single crystal metal surfaces (H. Brune, S. Rusponi).
Chapter 12. Electronic structure and magnetic properties of small deposited transition metal clusters (W. Wurth, M. Martins).
Chapter 13. Magnetic properties of deposited and embedded clusters (C. Binns).
Chapter 14. Theory of magnetic clusters and nanostructures at surfaces (G.M. Pastor, J.D. Dávilla).
Chapter 15. Modelling the structure and dynamics of metal nanoclusters deposited on
graphite (R. Smith et al.).