Page 293 - Academic Press Encyclopedia of Physical Science and Technology 3rd InOrganic Chemistry
P. 293

P1: GNH Final Pages
 Encyclopedia of Physical Science and Technology  EN009M-428  July 18, 2001  1:6






               550                                                                       Metal Particles and Cluster Compounds


               discovered. The magnitude of possibilities will certainly  J. Organomet. Chem. 213(1). Special Issue dedicated to the late Professor
               help sustain research in this area. With continued research  Paolo Chini.
               we will hopefully realize much of the great potential which  Klabunde, K. J. (1994). “Free Atoms, Cluster, and Nanoscale Particles,”
                                                                   Academic Press, San Diego.
               these systems possess.
                                                                 Klabunde, K. J. (1980). “Chemistry of Free Atoms and Particles,” Aca-
                                                                   demic Press, New York.
               ACKNOWLEDGMENT                                    Klabunde, K. J., and Mohs, C. (1998). In “Chemistry of Advanced
                                                                   Materials, An Overview” (L. V. Interrante and M. J. Hampden-Smith,
                                                                   eds.), pp. 271–327, Chapter 7, Wiley-VCH Publishers, New York.
               The support of the National Science Foundation and the Army Research  Klabunde, K. J., Jeong, G. H., and Olsen, A. (1990). Ground state metal
               Office is acknowledged with gratitude.               atoms and clusters in low temperature C H and C C activation:
                                                                   Periodic trends and unusual steric effects. In “Molecular Structure
                                                                   and Energetics,” Vol. 12. (J. A. Davies, P. L. Watson, J. F. Liebman,
               SEE ALSO THE FOLLOWING ARTICLES                     and A. Greenberg, eds.) VCH Publishers, New York.
                                                                 Lin, X. M., Wang, G. M., Sorensen, C. M., and Klabunde, K. J. (1999).
               BONDING AND STRUCTURE IN SOLIDS • LIGAND FIELD      J. Phys. Chem. B 103, 5488–5492.
               CONCEPT • METAL CLUSTER CHEMISTRY • NANOSIZED     Mason, M. G. (1983). Phys. Rev. B 27, 748.
                                                                 Mingos, M. P., and Wales, D. J. (1990). “Introduction to Cluster Chem-
               INORGANIC CLUSTERS • NOBLE METALS • PERIODIC
                                                                   istry,” Prentice Hall, Englewood Cliffs, New Jersey.
               TABLE • SINTERING                                 Muetterties, E. L., Rhodin, T. N., Band, E., Brucker, C. F., and
                                                                   Pretzer, W. R. (1979). Chem. Rev. 79, 91–138.
               BIBLIOGRAPHY                                      Neuman, R. D., and Ibrahim, J. H. (1999). Langmuir 15, 10.
                                                                 Pileni, M. P. (1997). Langmuir 13, 3266.
                                                                 Polyhedron Symposium-in Print Number 1 (1984). Polyhedron 3(12).
               Baetzold, R. C., and Hamilton, J. F. (1983). Prog. Solid State Chem. 15,  Recent Advances in the Structure and Bonding in Cluster Compounds.
                 1–53.                                           Schmid, G., ed. (1994). “Clusters and Colloids,” VCH Publishers,
               Cotton, F. A., and Walton, R. A. (1982). “Multiple Metal Bonds Between  Weinheim.
                 Metal Atoms,” Wiley, New York.                  Schugart, K. A., and Fenske, R. F. (1989). J. Am. Chem. Soc. 108,
               Cotton, F. A., and Wilkinson, G. (1980). “Advanced Inorganic Chem-  5094.
                 istry,” 4th ed. Wiley, New York.                Stave, M. S., and DePristo A. E. (1992). J. Chem. Phys. 97, 3386.
               Davis, S. C., and Klabunde, K. J. (1982). Chem. Rev. 82, 153–208. Amer-  Takasu, Y., Zhang, X. G., Minoura, S., and Murakami, T. (1997). Appl.
                 ican Chemical Society Publishers, Washington, D.C.  Surf. Sci. 121–122, 596.
               El-Sayed, M. A. (1991). J. Phys. Chem. 95, 3898.  Teo, B. K., and Keating, K. (1984). J. Am. Chem. Soc. 106, 2224.
               Fendler, J. H. (1987). Chem. Rev. 87, 877.        VanderWiel, D. P., Pruski, M., and King, T. S. (1999). J. Catalysis 188,
               Gates, B. C., Guczi, L., and Knozinger, H. (1986). “Metal Clusters in  186–202.
                 Catalysis,” Elsevier, Amsterdam.                Vasiliev, I., Ogut, S., and Chelikowsky, J. R. (1999). Phys. Rev. Lett. 82,
               Henglein, A. (1989). Chem. Rev. 89, 1861.           1919.
               Johnson, B. F. G., ed. (1980). “Transition Metal Clusters,” Wiley, New  West, A. (1984). “Solid State Chemistry and its Applications,” Wiley,
                 York.                                             New York.
   288   289   290   291   292   293   294   295   296   297   298