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Keyword [Slow magnetic relaxation]
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1. Synthesis, Single-molecule Magnetic Behavior And Fluoescent Properties Of Lanthanide-organic Coordination Compounds
2. Syntheses, Crystal Structures And Magnetic Properties Of New Polynuclear Metal Complexes Containing Polydentate Hydroxy-rich Ligands
3. Synthesis And Properties Of Molecule-based Magnetic Materials With Slow Magnetic Relaxation Behavior
4. Research On Single-Ion Magnets Based On Co(Ⅱ) And Mn(Ⅲ) Complexes
5. Investigation On Functional Complexes Constructed By Pyridine-carboxylate Ligands With Large Conjugated System
6. Assembly And Magnetic Behavior Modulation Of Low Dimensional Rare Earth Molecule-Based Magnets
7. New Mononuclear And Binuclear Lanthanide Complexes With Slow Magnetic Relaxation Behavior
8. Syntheses, Crystal Structures And Magnetic Properties Of Lanthanide-carboxylate Coordination Compounds
9. Syntheses,Crystal Structures And Magnetic Properties Of New 3d-4f Or 4f Polynuclear Metal Complexes
10. Syntheses,Structures And Magnetic Properties Of Lanthanide Complexes Based On 8-hydroxyquinoline Schiff Base
11. Magneto-Structural Correlations In Polynuclear Dysprosium(?) Single-Molecule Magnets
12. Synthese And Single-molecule Magnet Properties Of Dinuclear Lanthanide-carboxylate Coordination Compounds
13. Synthesis And Characterization Of Low-nuclear 4f,High-nuclear 3d-4f Complexes
14. Synthesis,Structure And Properties Of Complexes With Slow Magnetic Relaxation Behavior
15. Magnetic Anisotropy And Slow Magnetic Relaxation Of Mononuclear Co(?) And Cu(?)Complexes
16. Synthese,Structures,Magnetic And Iuminescent Properties Of Lanthanide Coordination Compounds Based On Aromatic Carboxylate Ligands
17. Design, Syntheses And Magnetic Properties Of Polynuyclear Ln-based Complexes
18. Slow Magnetic Relaxation Of Complexes Containing A Single Co~? Ion
19. Design,Syntheses And Magnetic Investigations Of Low-Nuclearity Lanthanide And Mutil-Nuclear Heterometallic Complexes
20. Synthesis,Structure And Magnetic Properties Of Low-nuclearity Complexes Constructed By Rare Earth Ions
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