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Gold Chemistry: Applications and Future Directions in the by unknown author

By unknown author

Written through world-class authors, this newest significant ebook at the subject highlights new and present developments in addition to destiny instructions. it's entire in its scope, overlaying all facets of gold chemistry -- from homogeneous to heterogeneous catalysis, from supramolecular assemblies to sensors and medicinal functions. the result's a useful paintings for either natural and inorganic chemists operating in universities and undefined, in addition to fabric scientists.Content:
Chapter 1 Gold(I) Nitrogen Chemistry (pages 1–45): Hanan E. Abdou, Ahmed A. Mohamed and John P. Fackler
Chapter 2 Chemistry of Gold(III) Complexes with Nitrogen and Oxygen Ligands (pages 47–92): Maria Agostina Cinellu
Chapter three Pentafluorophenyl Gold Complexes (pages 93–181): A. Luquin, E. Cerrada and M. Laguna
Chapter four Theoretical Chemistry of Gold – From Atoms to Molecules, Clusters, Surfaces and the cast kingdom (pages 183–247): Peter Schwerdtfeger and Matthias Lein
Chapter five Luminescence and Photophysics of Gold Complexes (pages 249–281): Chi?Ming Che and Siu?Wai Lai
Chapter 6 Gold Compounds and Their functions in medication (pages 283–319): Elizabeth A. Pacheco, Edward R.T. Tiekink and Michael W. Whitehouse
Chapter 7 Nanoscience of Gold and Gold Surfaces (pages 321–356): M. B. Cortie and A. McDonagh
Chapter eight Liquid Crystals in keeping with Gold Compounds (pages 357–396): Silverio Coco and Pablo Espinet

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1998) Further study of very close non-bonded CuI–CuI contacts. molecular structure of a new compound and density functional theory calculations. Inorganic Chemistry, 37, 4066–4069. , Mohamed, A. P. (2003) Cyclic trinuclear Gold(I) compounds: synthesis. structures and supramolecular acid-base p-stacks. Comments on Inorganic Chemistry, 24, 253–280. G. (1970) Organogold chemistry. III. 2-Pyridylgold(I). Journal of the American Chemical Society, 11, 730–731. , Attar, S. L. (2002) Crystal chemistry of the Gold (I) trimer, Au3(NC5H4)3: formation of hourglass figures and self-association through aurophilic attraction.

K. and Zhang, H. (1991) Cluster of clusters. Structure of a new cluster [(p-Tol3P) 10Au13Ag12Cl7](SbF6)2 containing a nearly staggered-eclipsed-staggered metal configuration and five doubly-bridging ligands. K. and Zhang, H. (1992) Molecular machines: molecular structure of [(p-Tol3P)10Au13Ag12Cl8] (PF7) – a Cluster with a biicosahedral rotorlike metal core and an unusual arrangement of bridging ligands. , Shi, X. and Zhang, H. (1992) Cluster rotamerism of a 25-metal-atom cluster [(Ph3P)10Au13Ag12Br8] þ monocation: a molecular rotary unit.

Pyykk€o, P. and Mendizabal, F. (1998) Theory of d10-d10 closed-shell attraction. III. Rings. Inorganic Chemistry, 37, 3018–3025. Laguna, A. and Laguna, M. (1999) Coordination chemistry of gold(II) complexes. Coordination Chemistry Reviews, 193–195, 837–856. Barker, J. and Kilner, M. (1994) The coordination chemistry of the amidine ligand. Coordination Chemistry Reviews, 133, 219–300. C. P. Jr (1987) Structural characterization of a linear [Au Á Á Á Pt Á Á Á Au] complex, Au2Pt(CH2P(S)Ph2)4, and its oxidized linear metal-metal bonded [Au-PtAu] product, Au2Pt(CH2P(S)Ph2)4Cl2.

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