遷移金属および希土化合物類<br>Transition Metals and Rare Earth Compounds (Topics in Current Chemistry)

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遷移金属および希土化合物類
Transition Metals and Rare Earth Compounds (Topics in Current Chemistry)

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  • 製本 Hardcover:ハードカバー版/ページ数 88 p.
  • 言語 ENG
  • 商品コード 9783540679769
  • DDC分類 546

基本説明

Contents: upconversion process in transition metal and rare earth metal systems; geometric and electronic information from the spectroscopy of six-coordinate copper (II) compounds; and more.

Full Description

There exists a large literature on the spectroscopic properties of copper(II) com- 9 pounds. This is due to the simplicity of the d electron configuration, the wide variety of stereochemistries that copper(II) compounds can adopt, and the f- xional geometric behavior that they sometimes exhibit [1]. The electronic and geometric properties of a molecule are inexorably linked and this is especially true with six-coordinate copper(II) compounds which are subject to a Jahn-T- ler effect.However,the spectral-structural correlations that are sometimes d- wn must often be viewed with caution as the information contained in a typical solution UV-Vis absorption spectrum of a copper(II) compound is limited. Meaningful spectral-structural correlations can be obtained in a related series of compounds where detailed spectroscopic data is available. In the fol- 4- lowing sections two such series are examined; the six-coordinate CuF and 6 2+ Cu(H O) ions doped as impurities in single crystal hosts.Using low tempera- 2 6 ture polarized optical spectroscopy and electron paramagnetic resonance, a very detailed picture can be drawn about the geometry of these ions in both their ground and excited electronic states. We then compare the spectrosco- cally determined structural data with that obtained from X-ray diffraction or EXAFS measurements.

Contents

Upconversion Processes in Transition Metal and Rare Earth Metal Systems.- Geometric and Electronic Information from the Spectroscopy of Six-Coordinate Copper(II) Compounds.- Low-Lying Electronic States and Photophysical Properties of Organometallic Pd(II) and Pt(II) Compounds. Modern Research Trends Presented in Detailed Case Studies.

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