List of bibliographic references
Number of relevant bibliographic references: 28.
[0-20] [
0 - 20][
0 - 28][
20-27][
20-40]
Ident. | Authors (with country if any) | Title |
---|
000332 (2010) |
Tomoyuki Kumano [Japon] ; Katsunori Hanamura [Japon] | Control of spectral emittance using a rare‐earth oxide film coated on a ceramic plate |
000625 (2006) |
Mikhail Ryazanov ; Constantin Hoch ; Hansjürgen Mattausch ; Arndt Simon [Allemagne] | Sm2O2I – A New Mixed‐Valence Samarium(II,III) Oxide Halide |
000750 (2004) |
Yong Seop Han [Corée du Sud] ; Jay Hyok Song [Corée du Sud] ; Jong Heo [Corée du Sud] | Quantitative Identification of Phonon Modes Controlling the Multiphonon Relaxation in Heavy‐Metal Oxide Glasses |
000763 (2004) |
Jay Hyok Song [Corée du Sud] ; Jong Heo [Corée du Sud] | Energy Transfer and Population Inversion in Heavy Metal Oxide Glasses Doped with Tm3+ and Tb3+ |
000794 (2003) |
J. Wasylak [Pologne] ; I. V. Kityk [Pologne] ; J. Kucharski [Pologne] | Nonlinear IR absorption in europium‐ and thulium‐doped oxide glasses |
000848 (2002) |
M. Yada [Japon] ; M. Mihara [Japon] ; S. Mouri [Japon] ; M. Kuroki [Japon] ; T. Kijima [Japon] | Rare Earth (Er, Tm, Yb, Lu) Oxide Nanotubes Templated by Dodecylsulfate Assemblies |
000964 (2001) |
John K. Gibson [États-Unis] | Reactions of actinide ions with ethylene oxide |
000A70 (2000) |
| Yttrium oxide thin films, YO, grown by ion beam sputtering onSi |
000B44 (2000) |
Ponnusamy Nachimuthu [Inde] ; Muga Vithal [Inde] ; Ranga Jagannathan [Inde] | Absorption and Emission Spectral Properties of Pr3+, Nd3+, and Eu3+ Ions in Heavy‐Metal Oxide Glasses |
000D45 (1998) |
Sarah I. Ajiboye [Royaume-Uni] ; Javed Iqbal [Royaume-Uni] ; Robert D. Peacock [Royaume-Uni] ; Naziha Prouff [Royaume-Uni] ; Graeme J. Taylor [Royaume-Uni] ; John M. Winfield [Royaume-Uni] ; Xiaoming Liu [Royaume-Uni] | Redox reactions between molybdenum or tungsten hexafluorides and p, f or d block elements in acetonitrile: Comparisons with reactions involving nitrosonium fluorometallates, the effect of fluoride ligand transfer and redox inhibition due to surface oxide |
000D72 (1998) |
T. Petzel [Allemagne] ; J. Mueller [Allemagne] ; B. Hormann [Allemagne] | ChemInform Abstract: Thermodynamics of the Rhombohedral‐Cubic Phase Transition of Thulium(III)oxide Fluoride. |
001181 (1995) |
Shu-Xiu Zhang [Japon] ; Shinichiro Murachi [Japon] ; Totaro Imasaka [Japon] ; Midori Watanabe [Japon] | Determination of rare earth impurities in ultrapure europium oxide by inductively-coupled plasma mass spectrometry |
001A16 (1988) |
L. C. Chandola [Inde] ; P. P. Khanna [Inde] | X-Ray fluorescence analysis of thulium oxide for rare earth impurities |
001A24 (1988) |
B. Gorski [Russie] ; Yu. S. Korotkin [Russie] ; V. N. Kosyakov [Russie] | Selective extraction of the transplutonium and rare-earth elements by trioctylphosphine oxide |
001D04 (1985) |
L. C. Chandola [Inde] ; P. P. Khanna [Inde] | X-ray fluorescence spectrometric analysis of erbium oxide for rare earth impurities |
001D05 (1985) |
Yu. V. Naidich [Ukraine] ; V. S. Zhuravlev [Ukraine] ; N. I. Frumina [Ukraine] ; V. V. Lashneva [Ukraine] ; P. A. Verkhovodov [Ukraine] | Wetting and contact interaction in rare-earth-element oxide-tin-molten titanium systems |
001D27 (1985) |
N C Parakh [Inde] ; J C Garg [Inde] | Non-ohmic electric conduction in polycrystalline thulium oxide |
001F96 (1982) |
Xue Zhi-Len [République populaire de Chine] ; Tan Ming-Guang [République populaire de Chine] ; Zhang Jia-Din [République populaire de Chine] ; Bao Jin-Rong [République populaire de Chine] | The determination of calcium in yttrium oxide by alpha-particle activation analysis |
002754 (1973) |
J. L. Routbort [États-Unis] ; J. C. Voglewede [États-Unis] | Creep of Mixed‐Oxide Fuel Pellets at High Stress |
002841 (1972) |
| Spectroscopy of rare earth oxide systems. I. Far infrared spectra of the rare earth sesquioxides, cerium dioxide and nonstoichiometric praseodymium and terbium oxides |
002853 (1972) |
N. S. Poluéktov ; S. A. Gava | Luminescence spectra of lanthanide-activated yttrium orthovanadate in the region of 0.7–1.1 μ and their use in the analysis of yttrium oxide |
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