HANDBOOK ON THE PHYSICS AND CHEMISTRY OF RARE EARTHS

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HANDBOOK ON THE PHYSICS AND CHEMISTRY OF RARE EARTHS ( handbook-onphysics-and-chemistry-rare-earths )

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xxxviii Index of Contents of Volumes 1–49 nonradiative processes – in crystals 4, ch. 36, p. 317 – in NIR-emitting complexes 47, ch. 269, p. 1 nuclear magnetic resonance, see NMR – in quaternary R2X3-PbX-ZX2 chalcogenides 48, ch. 275, p. 109 – in ternary systems with boron 6, ch. 49, p. 335; 38, ch. 238, p. 105 – in ternary systems with chalcogenides 13, ch. 89, p. 191 – in ternary systems with metallic elements 13, ch. 88, p. 1 – in ternary systems with lead ch. 237, p. 55 – in ternary systems with silicon – in rare earth binary alloys 8, ch. 54, p. 1 phase transitions – in the elements at ultra high pressure 43, ch. 257, p. 275 – quantum 49, ch. 280, p. 293 – structural distortions and phase separation in YBa2Cu3Ox 31, ch. 195, p. 1 – in R5T4 intermetallic compounds 44, ch. 262, p. 283 phosphides 23, ch. 156, p. 285 phosphors – persistent 48, ch. 274, p. 1 – recycling of 43, ch. 255, p. 159 – for white light emitting diodes 49, ch. 278, p. 1 photochemical, nano-ring formations in polyoxometalates 39, ch. 243, p. 297 photodynamic treatment of cancer 47, ch. 273, p. 273 photoemission – angle-resolved studies of untwinned YBa2Cu3Ox 31, ch. 201, p. 391 – in chalcogenides 10, ch. 67, p. 301 – inverse spectra, local density supercell theory 10, ch. 65, p. 165 – of Ce and its compounds 10, ch. 66, p. 231 – spectra, local density supercell theory 10, ch. 65, p. 165 – theory of 39, ch. 241, p. 1 photothermal treatment of cancer 47, ch. 273, p. 273 photovoltaics, lanthanides in 44, ch. 261, p. 169 physical metallurgy 11, ch. 78, p. 409 physical properties (also see magnetic properties) – at high pressure 42, ch. 252, p. 1 – of cuprates 30, ch. 193, p. 453 – of metals 1, ch. 2, p. 173 – of metals at ultra high pressure 43, ch. 257, p. 275 O optical glasses, recycling of p. 159 43, ch. 255, optical refrigeration 45, ch. 265, p. 179 organic synthesis 8, ch. 57, p. 335 38, 7, ch. 51, p. 1 organometallic compounds – arene-bridged compounds 7, ch. 53, p. 446 45, ch. 266, p. 261 – divalent samarium, in ch. 230, p. 393 – divalent ytterbium, in 6, ch. 50, p. 525; 36, 6, ch. 50, p. 525 – low valent 40, ch. 246, p. 241 – tetravalent cerium, in 36, ch. 229, p. 281 oxidation – reduction properties 18, ch. 122, p. 239 oxides – aluminates 39, ch. 242, p. 113 – binary – gallates – higher – mixed – sesqui, defects in 5, ch. 44, p. 321 – sesqui, phase transformation in 5, 3, ch. 27, p. 337; 18, ch. 125, p. 413 39, ch. 242, p. 113 38, ch. 236, p. 1 3, ch. 28, p. 401 ch. 44, p. 321 – ternary systems, R2O3-M2O3-M’O 13, ch. 90, p. 283 oxo-selenates 35, ch. 224, p. 45 oxygen nonstoichiometry and lattice effect in YBa2Cu3Ox P 31, ch. 195, p. 1 12, ch. 82, p. 71; 32, permanent magnets ch. 208, p. 515 – recycling of 43, ch. 255, p. 159 periodic table – influence of rare earths on p. 197 – position of rare earths in perovskites 3, ch. 29, p. 525 – aluminates 39, ch. 242, p. 113 – gallates 39, ch. 242, p. 113 – manganese 33, ch. 214, p. 249 persistent phosphors 48, ch. 274, p. 1 phase equilibria – in binary R5T4 intermetallic compounds 44, ch. 262, p. 283 – in cuprates 30, ch. 190, p. 229 11, ch. 75, 41, ch. 248, p. 1

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