Electronic Spectra of Transition Metal Ions in Crystals

Electronic Spectra of Transition Metal Ions in Crystals
Author: DONALD S. MCCLURE
Publisher:
Total Pages: 245
Release: 1961
Genre:
ISBN:

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This report includes: OPTICAL SPECTRA OF TRANSITION METAL IONS IN CORUNDUM, by Donald S. McClure. 1961, 67p. illus. OP ICAL SPECTRA OF Ni++, Co++, and Cu++ IN TE RAHEDRAL SITES IN CRYSTALS, by Herbert A. Weakliem. 1961, 47p. illus. tables. THE OPTICAL ABSORPTION SPECTRUM OF NiSiF6.6H2O, by Donald S. McClure. 1961, 14p. illus. table. EXCHANGE COUPLED Mn++ IONS IN ZnS SINGLE CRYSTALS, by Donald S. McClure. 1961, 11p. illus. tables.

Electronic Spectra of Transitions Metal Complexes

Electronic Spectra of Transitions Metal Complexes
Author: Vinod Jena
Publisher: Lulu.com
Total Pages: 93
Release: 2015-04-12
Genre: Reference
ISBN: 1329059875

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This books will provides a conceptual parts of Electronic spectra of various transition metal complexes, which is useful for various competitive examinations.

Multiplets of Transition-Metal Ions in Crystals

Multiplets of Transition-Metal Ions in Crystals
Author: Satoru Sugano
Publisher: Elsevier
Total Pages: 348
Release: 2012-12-02
Genre: Science
ISBN: 0323154794

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Multiplets of Transition-Metal Ions in Crystals provides information pertinent to ligand field theory. This book discusses the fundamentals of quantum mechanics and the theory of atomic spectra. Comprised of 10 chapters, this book starts with an overview of the qualitative nature of the splitting of the energy level as well as the angular behavior of the wavefunctions. This text then examines the problem of obtaining the energy eigenvalues and eigenstates of the two-electron systems, in which two electrons are accommodated in the t2g and eg shells in a variety of ways. Other chapters discuss the ligand-field potential, which is invariant to any symmetry operation in the group to which symmetry of the system belongs. This book discusses as well the approximate method of expressing molecular orbitals (MO) by a suitable linear combination of atomic orbitals (AO). The final chapter discusses the MO in molecules and the self-consistent field theory of Hartree–Fock. This book is a valuable resource for research physicists, chemists, electronic engineers, and graduate students.

Theoretical Spectroscopy of Transition Metal and Rare Earth Ions

Theoretical Spectroscopy of Transition Metal and Rare Earth Ions
Author: Mikhail G. Brik
Publisher: CRC Press
Total Pages: 209
Release: 2019-12-11
Genre: Science
ISBN: 100000757X

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This book describes in detail the main concepts of theoretical spectroscopy of transition metal and rare-earth ions. It shows how the energy levels of different electron configurations are formed and calculated for the ions in a free state and in crystals, how group theory can help in solving main spectroscopic problems, and how the modern DFT-based methods of calculations of electronic structure can be combined with the semi-empirical crystal field models. The style of presentation makes the book helpful for a wide audience ranging from graduate students to experienced researchers. Performance of optical materials crucially depends on the impurity ions intentionally introduced into the crystalline host materials. The color of these materials, their emission and absorption spectra can be understood by analyzing the relations between the electronic properties of impurity ions and host crystal structure, which constitutes the main content of this book. It describes in detail the main concepts of theoretical spectroscopy of transition metal and rare earth ions.

Electronic and Vibronic Spectra of Transition Metal Complexes II

Electronic and Vibronic Spectra of Transition Metal Complexes II
Author: Hartmut Yersin
Publisher: Springer
Total Pages: 262
Release: 2010-12-01
Genre: Science
ISBN: 9783642083129

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The unique properties and applications of transition metal compounds have long fascinated both physicists and chemists. This volume presents theoretical and experimental studies for a deeper understanding of the electronic and vibronic properties of these compounds. In particular, an introduction into properties of spin sublevels of dd*, dÂ*, and ÂÂ* states is given, and a modern ligand field theory based on the Angular Overlap Model is presented. In experimental case studies it is shown how to characterize different types of electronic transitions using modern methods of laser spectroscopy. Consequences of spin-orbit coupling, zero-field splittings, spin-lattice relaxations, chromophore-matrix interactions, Herzberg-Teller/Franck-Condon activities, and localization/delocalization properties are treated.