Handbook on the Physics and Chemistry of Rare Earths

Nonfiction, Science & Nature, Science, Chemistry, Inorganic, Physics, General Physics
Cover of the book Handbook on the Physics and Chemistry of Rare Earths by K.A. Gschneidner, Vitalij K. Pecharsky, Jean-Claude G. Bunzli, Diploma in chemical engineering (EPFL, 1968)PhD in inorganic chemistry (EPFL 1971), Elsevier Science
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Author: K.A. Gschneidner, Vitalij K. Pecharsky, Jean-Claude G. Bunzli, Diploma in chemical engineering (EPFL, 1968)PhD in inorganic chemistry (EPFL 1971) ISBN: 9780080548579
Publisher: Elsevier Science Publication: June 19, 2003
Imprint: North Holland Language: English
Author: K.A. Gschneidner, Vitalij K. Pecharsky, Jean-Claude G. Bunzli, Diploma in chemical engineering (EPFL, 1968)PhD in inorganic chemistry (EPFL 1971)
ISBN: 9780080548579
Publisher: Elsevier Science
Publication: June 19, 2003
Imprint: North Holland
Language: English

This volume of the Handbook illustrates the rich variety of topics covered by rare earth science. Three chapters are devoted to the description of solid state compounds: skutterudites (Chapter 211), rare earth -antimony systems (Chapter 212), and rare earth-manganese perovskites (Chapter 214). Two other reviews deal with solid state properties: one contribution includes information on existing thermodynamic data of lanthanide trihalides (Chapter 213) while the other one describes optical properties of rare earth compounds under pressure (Chapter 217). Finally, two chapters focus on solution chemistry. The state of the art in unraveling solution structure of lanthanide-containing coordination compounds by paramagnetic nuclear magnetic resonance is outlined in Chapter 215. The potential of time-resolved, laser-induced emission spectroscopy for the analysis of lanthanide and actinide solutions is presented and critically discussed in Chapter 216.

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This volume of the Handbook illustrates the rich variety of topics covered by rare earth science. Three chapters are devoted to the description of solid state compounds: skutterudites (Chapter 211), rare earth -antimony systems (Chapter 212), and rare earth-manganese perovskites (Chapter 214). Two other reviews deal with solid state properties: one contribution includes information on existing thermodynamic data of lanthanide trihalides (Chapter 213) while the other one describes optical properties of rare earth compounds under pressure (Chapter 217). Finally, two chapters focus on solution chemistry. The state of the art in unraveling solution structure of lanthanide-containing coordination compounds by paramagnetic nuclear magnetic resonance is outlined in Chapter 215. The potential of time-resolved, laser-induced emission spectroscopy for the analysis of lanthanide and actinide solutions is presented and critically discussed in Chapter 216.

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