Handbook on the Physics and Chemistry of Rare Earths. vol.34 by Karl A. Gschneidner Jr. B.S. University of Detroit

By Karl A. Gschneidner Jr. B.S. University of Detroit 1952
Ph.D. Iowa State University 1957, Jean-Claude Bünzli Diploma in chemical engineering (EPFL 1968)
PhD in inorganic chemistry (EPFL 1971), Vitalij K. Pecharsky B.S./M.S. L'viv State University

This quantity of the instruction manual provides 5 new chapters to the technology of infrequent earths. of the chapters care for intermetallic compounds. an outline of ternary platforms containing infrequent earths, transition metals and indium - bankruptcy 218 - opens the amount. it really is by means of bankruptcy 219 checking out relationships among superconductivity and magnetism. the following chapters are devoted to complicated compounds of infrequent earths: bankruptcy 220 describes structural experiences utilizing circularly polarized luminescence spectroscopy of lanthanide platforms, whereas bankruptcy 221 examines rare-earth metal-organic frameworks, often referred to as coordination polymers. the ultimate bankruptcy 222 bargains with the catalytic task of infrequent earths in site-selective hydrolysis of DNA and RNA.

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G. 2(3) Ref. 1 2 3 4 5 3 4 6 7 7 5 3 4 8 8 5 3 4 2 5 3 4 5 9 3 4 5 10 11 2 3 4 12 12 2 3,13 4 14 15 16 2 3,13 continued on next page RARE EARTH–TRANSITION METAL–INDIDES 33 Table 7, continued Compound Dy2 AgIn3 Dy2 AgIn Str. G. 9(3) Ref. 7(5) 2 4 a Lattice parameters at 20 K. b Lattice parameters at 100 K. 0 pm at 300 K. 1 pm at 40 K. References 1. Dwight and Kimball (1987) 2. Yagasaki et al. (1985) 3. Galera et al. (1984) 4. Sysa and Kalychak (1992) 5. Sysa (1991) 6. Ihrig et al. (1973) 7. Maetz et al.

2002a) 11. Canepa et al. (2002b) 12. Kalychak (1999a) 13. Kalychak et al. 3(4) Ref. 15 3 4 16 14 1 17 15 4 12 18 14 1 17 15 3 4 19 1 16 14 17 15 3 4 14. Sysa et al. (1988) 15. Zaremba et al. (1989) 16. Zaremba et al. (1990) 17. Dubenskii et al. (1998) 18. Dubenskii et al. (1999) 19. Zaremba et al. (2003b) ity of the compounds with AlB2 type structure have been established by Baranyak (1991). 8. In other ternary systems, R–Ni–In, compounds with the same compositions as in the Ce– Ni–In system have been studied.

Type CaIn2 CaIn2 CaIn2 CaIn2 CaIn2 KHg2 CaIn2 CaIn2 CaIn2 CaIn2 CaIn2 KHg2 References 1. Mazzone et al. G. 4 2. 1 3. Dhar et al. (1995) Ref. 2. R–4d-metal–In systems The isothermal sections of the phase diagrams of the R–4d-metal–In systems have not been studied prior to our own experimental investigations. Only the ternary compounds with equiatomic compositions in the R–{Rh, Pd, Ag, Cd}–In systems were known in the literature. The systems with zirconium, niobium, molybdenum, and technetium as 4d-element component have not been studied to date.

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