Advances in Metal and Semiconductor Clusters, Volume 4: Cluster Materials

Duncan, M.A.

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Table of contents
  • Cover
  • ADVANCES IN METAL AND SEMICONDUCTOR CLUSTERSiii
  • Copyright Pageiv
  • Contentsv
  • LIST OF CONTRIBUTORSvii
  • PREFACExi
  • CHAPTER 1. PREPARATION AND PROPERTIES OF INAS AND INP NANOCRYSTALS1
  • CHAPTER 2. MAGNETIZATION REVERSAL IN NANOPARTICLES35
  • CHAPTER 3. ELECTRON NANODIFFRACTION AND STEM IMAGING OF NANOPARTICLES AND NANOTUBES67
  • CHAPTER 4. SYNTHESIS AND CHARACTERIZATION OF METAL AND SEMICONDUCTOR NANOPARTICLES115
  • CHAPTER 5. ENDOHEDRAL METALLOFULLERENES179
  • CHAPTER 6. ENDOHEDRAL METALLOFULLERENES: STRUCTURES AND ELECTRONIC PROPERTIES205
  • CHAPTER 7. SYNTHESIS AND PROPERTIES OF ENCAPSULATED STRUCTURES AND INTERCALATED INORGANIC FULLERENE-227
  • CHAPTER 8. AB INITIO CALCULATIONS ON MET-CARS: A COMPARISON OF DIFFERENT LEVELS OF THEORY ON MODEL C253
  • CHAPTER 9. STRUCTURE AND MECHANICAL FAILURE IN NANOPHASE SILICON NITRIDE: LARGE-SCALE MOLECULAR DYNA263
  • CHAPTER 10. PROBING THE ELECTRONIC STRUCTURE OF TRANSITION METAL CLUSTERS FROM MOLECULAR TO BULK-LIK299
  • CHAPTER 11. OPTICAL INVESTIGATIONS OF SURFACES AND INTERFACES OF METAL CLUSTERS345
  • INDEX395
Book details
  • Vendor Elsevier S & T
  • SKU 9780762300587
  • ISBN-13 9780080552705
  • Author Duncan, M.A.
  • Category Science
  • Subject Spectroscopy & Spectrum Analysis

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Cluster Materials is the fourth volume of the highly successful series Advances in Metal and Semiconductor Clusters. In this volume the focus is on the properties of clusters which determine their potential applications as new materials. Metal and semiconductor clusters have been proposed as precursors for materials or as actual materials since the earliest days of cluster research. In the last few years, a variety of techniques have made it possible to produce clusters in sizes varying from a few atoms up to several thousand atoms. While some measurements are performed in the gas phase on non-isolated clusters, many cluster materials can now be isolated in macroscopic quantities and more convenient studies of their properties become possible.
In this volume the authors focus on measurement of optical, electronic, magnetic, chemical and mechanical properties of clusters or of cluster assemblies. All of these properties must fall into acceptable ranges of behaviour before useful materials composed of clusters can be put into practical applications. As evidenced by the various work described here, the realisation of practical products based on cluster materials seems to be approaching rapidly.