Clusters and nano-assemblies physical and biological systems : Richmond, Virginia, U.S.A., 10-13 November, 2003

While the field of clusters and nano-structures in the physical sciences has been actively pursued only over the past two decades, nature has known the benefits of the nanoscale for a very long time. The focus of the International Symposium on Clusters and Nano-Assemblies: Physical and Biological Sy...

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Detalles Bibliográficos
Autor Corporativo: International Symposium on "Clusters and Nano-Assemblies: Physical and Biological Systems" (-)
Otros Autores: Jena, P. (-), Khanna, S. N., Rao, B. K.
Formato: Libro electrónico
Idioma:Inglés
Publicado: Singapore ; New York : World Scientific Pub 2005.
Colección:EBSCO Academic eBook Collection Complete.
Acceso en línea:Conectar con la versión electrónica
Ver en Universidad de Navarra:https://innopac.unav.es/record=b31787198*spi
Tabla de Contenidos:
  • Cover
  • Contents
  • Preface
  • Atomic Clusters
  • Catalysis with Small Free Noble Metal Clusters T.M. Bernhardt, L.D. Socaciu, J. Hagen, D. Popolan, J. Le Roux, U. Heiz and L. Woste
  • 1. Introduction
  • 2. Experiment
  • 3. Results and Discussion
  • Acknowledgments
  • References
  • Activated Diatomic Species as Important Reaction Intermediates of Nanocatalysis Y.D. Kim and G. Gantefor
  • 1. Introduction
  • 2. Experiments and Results
  • 3. Concluding Remarks
  • Acknowledgments
  • References
  • Relativistic Density Functional Calculations for Open-Shell Systems S. Varga, A. Rosen, J. Anton and B. Fricke
  • 1. Introduction
  • 2. Method
  • 3. Results
  • 4. Summary
  • Acknowledgments
  • References
  • Electronic Structure and Stability of the As@Ni12@As20 and As Cages T. Baruah, R.R. Zope and M.R. Pederson
  • 1. Introduction
  • 2. Computational Details
  • 3. Results and Discussion
  • 4. Summary
  • Acknowledgments
  • References
  • Structural and Electronic Properties of CdTe Clusters J. Rufinus
  • 1. Introduction
  • 2. Computational Method
  • 3. Results and Discussions
  • 4. Conclusion
  • Acknowledgement
  • References
  • Spin Excitations Induced by Projectile in Ferromagnetic Cluster R.-J. Tarento, P. Joyes, R. Lahreche and D.E. Mekki
  • 1. Introduction
  • 2. The Heisenberg Hamiltonian
  • 3. Results for Small Linear Cluster
  • 4. Conclusions
  • Acknowledgements
  • References
  • Time-Dependent Charge Dynamics in C60 and a Proposal for Nanostructure-based Computing Technology G.P. Zhang, T.F. George and D.A. Jelski
  • 1. Introduction
  • 2. Time-Reversal Invariance in Ultrafast Dynamics
  • 3. Charge Dynamics in C60
  • 4. A Proposal for Nanostructure Based Computing Technology
  • References
  • Molecular Dynamics Study of Iron Cluster Coalescence at Sub-Melting Point Temperatures F. Ding, K. Bolton and A. Rosen
  • 1. Introduction
  • 2. Potential Energy Surface and Simulation Methods
  • 3. Results and Discussion
  • 4. Conclusion
  • Acknowledgments
  • References
  • Using Ideal PES Model to Study Kinetics of Complex System J. Lu and R.S. Berry
  • 1. Introduction
  • 2. Construction of Master Equation
  • 3. Relaxation on a Simple Ideal PES Model and Its Sample PESs
  • 4. Relaxation on a More Complicated Ideal PES Model and Its Sample PESs
  • 5. Conclusions
  • References
  • The Z=82 Shell Effect Near the Proton Drip-Line C. Samanta and S. Adhikari
  • Reference
  • Organic and Molecular Clusters
  • Fundamental Cluster Studies of Materials and Atmospheric Chemistry 81 D.P. Hydutsky, D.E. Bergeron, T.E. Dermota, J.R. Stairs, K.L. Knappenberger, Jr., K.M. Davis, C.E. Jones, Jr., M.A. Sobhy, N.J. Bianco, S.J. Peppernick and A.W. Castleman, Jr.
  • 1. Introduction
  • 2. Delayed Ionization
  • 3. Novel Cluster Materials
  • 4. Solvation
  • 5. Conclusion
  • Acknowledgements
  • References
  • Excited State Charge Transfer and Dissociation of Mg+-CH3I Complex F. Misaizu, A. Furuya, H. Tsunoyama and K. Ohno
  • 1. Introduction
  • 2. Experimental Setup and Calculation
  • 3. Results and Discussion
  • Acknowledgments
  • References
  • Catalysis
  • Fabrication of Two-Dimensional and Three-Dimensional Platinum Nanoclusters to Serve as High Technology Catalysts-Catalysts Capable of 100% Reaction Selectivity G.A. Somorjai, R.M. Rioux and J. Grunes
  • Abstr.