Works matching DE "LUTETIUM"
Results: 283
Gallatabenzene Ligands Emerging from Open Lutetocene and Yttrocene Methyl Complexes.
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- Chemistry - A European Journal, 2024, v. 30, n. 72, p. 1, doi. 10.1002/chem.202403472
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Cascade C−H Activation and Two C−C Bond Forming in Reaction of Azalutetacyclopentadiene with 2‐Methylbenzonitriles.
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- Chemistry - A European Journal, 2024, v. 30, n. 53, p. 1, doi. 10.1002/chem.202402311
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Is LSO the future of PET?
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- European Journal of Nuclear Medicine & Molecular Imaging, 2002, v. 29, n. 11, p. 1523, doi. 10.1007/s00259-002-0987-y
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Is LSO the future of PET?
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- European Journal of Nuclear Medicine & Molecular Imaging, 2002, v. 29, n. 11, p. 1525, doi. 10.1007/s00259-002-0988-x
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Garnet Lu–Hf dating of retrograde fluid activity during ultrahigh-pressure metamorphic eclogites exhumation.
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- Mineralogy & Petrology, 2009, v. 95, n. 3/4, p. 315, doi. 10.1007/s00710-008-0030-5
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Physiological and Biochemical Effects of Rare Earth Elements on Plants and Their Agricultural Significance: A Review.
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- Journal of Plant Nutrition, 2004, v. 27, n. 1, p. 183, doi. 10.1081/PLN-120027555
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Effect of coactivation with Dy<sup>3+</sup> and Yb<sup>3+</sup> ions on the efficiency of energy storage in Lu<sub>2</sub>SiO<sub>5</sub>:Ce<sup>3+</sup> crystals.
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- Technical Physics Letters, 2009, v. 35, n. 2, p. 154, doi. 10.1134/S1063785009020175
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Current Transfer Processes in Thin Lutecium and Terbium Oxide Films on Silicon.
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- Technical Physics Letters, 2000, v. 26, n. 10, p. 916, doi. 10.1134/1.1321238
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Studying the Interaction between Lutetium Diphthalocyanine Molecules and Silicon Carbide Nanoparticles by Optical Methods.
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- Technical Physics, 2021, v. 66, n. 3, p. 476, doi. 10.1134/S1063784221030208
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A Review on The Development of Lutetium Selective Ion Sensors.
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- Analytical & Bioanalytical Electrochemistry, 2022, v. 14, n. 12, p. 1170
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Microcrystalline Anti-Stokes Luminophores NaYF4 Doped with Ytterbium, Erbium, and Lutetium Ions.
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- Russian Journal of General Chemistry, 2021, v. 91, n. 5, p. 844, doi. 10.1134/S1070363221050145
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Complexes of Erbium and Lutetium of Different Compositions with 4-R-5-Nitro-substituted Phthalocyanines.
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- Russian Journal of General Chemistry, 2020, v. 90, n. 1, p. 118, doi. 10.1134/S1070363220010181
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Structural Parameters and Electron Transfer in Ytterbium, Lutetium, and Cerium Compounds with Hydrocarbon Monocycles.
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- Russian Journal of General Chemistry, 2019, v. 89, n. 7, p. 1424, doi. 10.1134/S1070363219070120
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Quantum-chemical study of lutetium and ytterbium bis- and tetrakis(phthalocyaninates).
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- Russian Journal of General Chemistry, 2016, v. 86, n. 11, p. 2515, doi. 10.1134/S1070363216110189
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Axial ligands and (acido) (phthalocyaninato) lanthanides(III) stability on examples of erbium and lutetium.
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- Russian Journal of General Chemistry, 2015, v. 85, n. 4, p. 915, doi. 10.1134/S107036321504026X
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Sandwich complexes of lutetium with tetraanthraquinoneporphyrazine and asymmetric alkoxy-substituted phthalocyanines. Preparation and spectral properties.
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- Russian Journal of General Chemistry, 2014, v. 84, n. 5, p. 953, doi. 10.1134/S1070363214050284
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Preparation and properties of the MUO polyuranates (M = Y, Tb, Dy, Ho, Er, Tm, Yb, or Lu).
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- Russian Journal of General Chemistry, 2014, v. 84, n. 1, p. 6, doi. 10.1134/S1070363214010022
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Lanthanide complexes with alkylsulfamoyl-substituted octaphenyltetraazaporphyrins.
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- Russian Journal of General Chemistry, 2012, v. 82, n. 7, p. 1284, doi. 10.1134/S1070363212070171
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State of the rare earth elements tetapyrazinoporphyrazinate complexes in protic media.
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- Russian Journal of General Chemistry, 2010, v. 80, n. 9, p. 1876, doi. 10.1134/S1070363210090276
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Acid base interactions of octaphenyltetrapyrazinoporphyrazine and its complex with lutetium(III) in proton-donor media.
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- Russian Journal of General Chemistry, 2007, v. 77, n. 12, p. 2192, doi. 10.1134/S1070363207120183
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Origin of the near-room temperature resistance transition in lutetium with H2/N2 gas mixture under high pressure.
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- National Science Review, 2024, v. 11, n. 7, p. 1, doi. 10.1093/nsr/nwad337
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Preparation of (<sup>177</sup>Lu-DOTA)<sub>n</sub>-PAMAM-[Nimotuzumab- F(ab')<sub>2</sub>] as a Therapeutic Radioimmunoconjugate for EGFR Overexpressed Cancer Treatment.
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- Journal of Mathematical & Fundamental Sciences, 2017, v. 49, n. 3, p. 258, doi. 10.5614/j.math.fund.sci.2017.49.3.4
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Combined biology-guided radiotherapy and Lutetium PSMA theranostics treatment in metastatic castrate-resistant prostate cancer.
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- Frontiers in Oncology, 2023, v. 13, p. 1, doi. 10.3389/fonc.2023.1134884
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Sub-100 femtosecond pulses from a SESAM modelocked thin disk laser.
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- Applied Physics B: Lasers & Optics, 2012, v. 106, n. 3, p. 559, doi. 10.1007/s00340-012-4900-5
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Spectroscopic characterization of sol-gel synthesized Tm:LuO nanocrystals.
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- Applied Physics B: Lasers & Optics, 2012, v. 106, n. 2, p. 409, doi. 10.1007/s00340-011-4691-0
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Crystal growth, spectroscopy, and highly efficient laser operation of thulium-doped LuO around 2 μm.
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- Applied Physics B: Lasers & Optics, 2011, v. 102, n. 1, p. 19, doi. 10.1007/s00340-010-4361-7
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Structural and thermal properties of the monoclinic Lu<sub>2</sub>SiO<sub>5</sub> single crystal: evaluation as a new laser matrix.
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- Journal of Applied Crystallography, 2009, v. 42, n. 2, p. 284, doi. 10.1107/S0021889809004269
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Electric Dipole Transitions for Lu I (Z = 71).
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- Arabian Journal for Science & Engineering (Springer Science & Business Media B.V. ), 2011, v. 36, n. 4, p. 635, doi. 10.1007/s13369-011-0061-9
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Value of Individualized Dosimetry in Peptide Receptor Radionuclide Therapy (PRRT) by Lutetium-177 [<sup>177</sup>lu -- Dota<sup>0</sup>, Tyr³] Octreotate.
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- e-Journal of Science & Technology, 2014, v. 9, n. 3, p. 43
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Theoretical electronic investigation of the low-lying electronic states of the LuF molecule.
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- Canadian Journal of Physics, 2009, v. 87, n. 11, p. 1163, doi. 10.1139/P09-077
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A positron injection-based 3D imaging test method for inner cavities in complex parts.
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- Insight: Non-Destructive Testing & Condition Monitoring, 2016, v. 58, n. 11, p. 617, doi. 10.1784/insi.2016.58.11.617
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Lutetium Triflate as an Efficient and Recyclable Catalyst for Chemoselective Thioacetalization of Aldehydes.
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- Synthetic Communications, 2004, v. 34, n. 23, p. 4401, doi. 10.1081/SCC-200039488
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The microstructure and magnetic properties of (SmLu)(Co, Fe, Cu, Zr) Z magnets with varying Lu content.
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- Materials Technology, 2016, v. 31, n. 10, p. 580, doi. 10.1080/10667857.2016.1148321
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X-ray absorption fine-structure study on the fine structure of lutetium segregated at grain boundaries in fine-grained polycrystalline alumina.
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- Philosophical Magazine, 2004, v. 84, n. 9, p. 865, doi. 10.1080/14786430310001638753
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Reevaluation of phase relations in the chemical system neodymium lutetium oxide NdLuO<sub>3</sub>.
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- Crystal Research & Technology, 2017, v. 52, n. 1, p. n/a, doi. 10.1002/crat.201600237
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Czochralski growth of Lu1‐xScxBO3:Ce solid solution crystals.
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- Crystal Research & Technology, 2011, v. 46, n. 1, p. 48, doi. 10.1002/crat.201000481
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Divalent Europium, NIR and Variable Emission of Trivalent Tm, Ho, Pr, Er, Nd, and Ce in 3D Frameworks and 2D Networks of Ln–Pyridylpyrazolates.
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- Chemistry (2624-8549), 2023, v. 5, n. 2, p. 1006, doi. 10.3390/chemistry5020069
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Evaluation of the <sup>177m</sup>Lu-concentration in in-house produced <sup>177</sup>Lu-radiopharmaceuticals and commercially available Lutathera<sup>®</sup>.
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- EJNMMI Radiopharmacy & Chemistry, 2023, v. 8, n. 1, p. 1, doi. 10.1186/s41181-023-00222-2
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Research on phase transition behavior of lutetium orthoborate LuBO3.
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- Phase Transitions, 2011, v. 84, n. 4, p. 315, doi. 10.1080/01411594.2010.536887
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Synthesis, microstructure and dielectric properties of (1-x)PSN-xPLuN.
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- Phase Transitions, 2008, v. 81, n. 11/12, p. 1065, doi. 10.1080/01411590802457995
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Hydrothermal Synthesis of Layered Double Hydroxides Doped with Holmium, Thulium and Lutetium.
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- Inorganics, 2022, v. 10, n. 12, p. 217, doi. 10.3390/inorganics10120217
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Synthesis and spectral properties of lutetium sandwich complexes containing fragments of tetrabenzoporphyrin and alkoxy(chloro)-substituted phthalocyanines of low symmetry.
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- Russian Journal of Organic Chemistry, 2015, v. 51, n. 5, p. 727, doi. 10.1134/S1070428015050243
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Synthesis and spectral properties of lutetium complexes with unsymmetrical phthalocyanines and sandwich complexes based thereon containing tetraanthraquinonoporphyrazine fragments.
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- Russian Journal of Organic Chemistry, 2014, v. 50, n. 7, p. 986, doi. 10.1134/S1070428014070094
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Synthesis and spectral properties of lanthanide double-decker complexes with tetrabenzoporphyrin and phthalocyanine.
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- Russian Journal of Organic Chemistry, 2012, v. 48, n. 6, p. 851, doi. 10.1134/S1070428012060176
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Lutetium-177-PSMA therapy for prostate cancer patients—a brief overview of the literature.
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- Tijdschrift voor Urologie, 2020, v. 10, n. 6/7, p. 141, doi. 10.1007/s13629-020-00300-z
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Australian Supply of Lutetium-177.
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- Gamma Gazette, 2014, n. 11, p. 26
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- Article
Enhanced Lutetium Ion Sorption from Aqueous Solutions Using Activated Ion Exchangers.
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- Polymers (20734360), 2024, v. 16, n. 2, p. 220, doi. 10.3390/polym16020220
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Laser Performance of 1%at. Yb : Lu<sub>2</sub>O<sub>3</sub> Ceramic.
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- Advances in Optical Technologies, 2012, p. 1, doi. 10.1155/2012/484235
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Short Note on the Observation of Ambient Condition Room Temperature Superconductivity in Nitrogen-Doped Lutetium Hydride.
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- Journal of Superconductivity & Novel Magnetism, 2023, v. 36, n. 4, p. 1085, doi. 10.1007/s10948-023-06563-y
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Electron–Phonon Coupling Constant of Uranium and Lutetium.
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- Journal of Superconductivity & Novel Magnetism, 2022, v. 35, n. 9, p. 2333, doi. 10.1007/s10948-022-06255-z
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