STRUCTURE, SYMMETRY AND LUMINESCENCE

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Chemically tuned emission properties of luminescent
materials are important in sensing technology, such
as coatings on spectroscopic detectors. Copper(I),
Silver(I) and Gold(I) halide complexes are well known
as candidates for luminescence properties that are
dependent upon choice of ligand and more recently the
symmetry of the complex about the metal centers. This
book establishes and illustrates the systematic
energy changes in fluorescent properties of these
complexes with symmetry within a class of halide
ligands. Quantum mechanical calculations indicate the
energy and source of these luminescent properties as
well as the quenching phenomenon found in some higher
symmetry species.

Autorentext
Randal Hallford, Ph.D.: Physical Inorganic Chemistry from Oklahoma State University, Stillwater, Oklahoma 2003.

Klappentext
Chemically tuned emission properties of luminescent materials are important in sensing technology, such as coatings on spectroscopic detectors. Copper(I), Silver(I) and Gold(I) halide complexes are well known as candidates for luminescence properties that are dependent upon choice of ligand and more recently the symmetry of the complex about the metal centers. This book establishes and illustrates the systematic energy changes in fluorescent properties of these complexes with symmetry within a class of halide ligands. Quantum mechanical calculations indicate the energy and source of these luminescent properties as well as the quenching phenomenon found in some higher symmetry species.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783639093100
    • Sprache Deutsch
    • Genre Chemie
    • Größe H220mm x B150mm x T22mm
    • Jahr 2009
    • EAN 9783639093100
    • Format Kartonierter Einband (Kt)
    • ISBN 978-3-639-09310-0
    • Titel STRUCTURE, SYMMETRY AND LUMINESCENCE
    • Autor Randal Hallford
    • Untertitel OF ANIONIC COPPER(I), SILVER(I), AND GOLD(I) HALIDE COMPLEXES
    • Gewicht 570g
    • Herausgeber VDM Verlag
    • Anzahl Seiten 372

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