112 results on '"Bolvin, Hélène"'
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2. Complete Active Space Wavefunction-Based Analysis of Magnetization and Electronic Structure
3. Paramagnetic Properties of [AnIV(NO3)6]2− Complexes (An = U, Np, Pu) Probed by NMR Spectroscopy and Quantum Chemical Calculations.
4. Relativistic Methods for Calculating Electron Paramagnetic Resonance (EPR) Parameters
5. Symmetry and Rigidity for Boosting Erbium‐Based Molecular Light‐Upconversion in Solution.
6. Bonding and Magnetic Trends in the [AnIII(DPA)3]3– Series Compared to the Ln(III) and An(IV) Analogues
7. Paramagnetic Properties of [AnIV(NO3)6]2−Complexes (An = U, Np, Pu) Probed by NMR Spectroscopy and Quantum Chemical Calculations
8. Are Actinyl Cations Good Probes for Structure Determination in Solution by NMR?
9. Complete Active Space Wavefunction-Based Analysis of Magnetization and Electronic Structure
10. Bonding and Magnetic Trends in the [AnIII(DPA)3]3– Series Compared to the Ln(III) and An(IV) Analogues.
11. Modeling magnetic properties of actinide complexes
12. Analysis of the Magnetic Coupling in a Mn(II)‐U(V)‐Mn(II) Single Molecule Magnet
13. output files for article 'Analysis of the magnetic couplingin a {Mn(II)-U(V)-Mn(II)} Single Molecule Magnet'
14. Dipolar and Contact Paramagnetic NMR Chemical Shifts in AnIV Complexes with Dipicolinic Acid Derivatives
15. Relativistic Methods for Calculating Electron Paramagnetic Resonance (EPR) Parameters
16. Metal-Based Linear Light Upconversion Implemented in Molecular Complexes: Challenges and Perspectives
17. Relativistic Methods for Calculating Electron Paramagnetic Resonance (EPR) Parameters
18. Local Structure and Magnetism of La1–xMxPO4 (M = Sm, 239Pu, 241Am) Explained by Experimental and Computational Analyses
19. Temperature Dependence of 1H Paramagnetic Chemical Shifts in Actinide Complexes, Beyond Bleaney's Theory: The AnVIO22+–Dipicolinic Acid Complexes (An=Np, Pu) as an Example
20. Temperature dependence of $^1H$ paramagnetic chemical shifts in actinide complexes, beyond Bleaney's theory: The An$^{VI}$O$_2^{2+}$ – Dipicolinic AcidcComplexes (An=Np, Pu) as an Example
21. Octahedral Hexachloro Environment of Dy3+ with Slow Magnetic Relaxation and Luminescent Properties
22. Crystallographic Structure and Crystal Field Parameters in the [An IV (DPA) 3 ] 2 -series
23. Temperature Dependence of 1 H Paramagnetic Chemical Shifts in Actinide Complexes, Beyond Bleaney's Theory: The An VI O 2 2+ –Dipicolinic Acid Complexes (An=Np, Pu) as an Example
24. Dipolar and Contact Paramagnetic NMR Chemical Shifts in AnIV Complexes with Dipicolinic Acid Derivatives.
25. Molecular light-upconversion: we have had a problem! When excited state absorption (ESA) overcomes energy transfer upconversion (ETU) in Cr(iii)/Er(iii) complexes
26. Crystal Structure and Magnetic Properties of Peacock–Weakley Type Polyoxometalates Na9[Ln(W5O18)2] (Ln = Tm, Yb): Rare Example of Tm(III) SMM
27. Dipolar and Contact Paramagnetic NMR Chemical Shifts in AnIVComplexes with Dipicolinic Acid Derivatives
28. Local Structure and Magnetism of La1-xMxPO4 (M = Sm, 239Pu, 241Am) Explained by Experimental and Computational Analyses.
29. Crystallographic structure and crystal field parameters in the [AnIV(DPA)3]2− series, An = Th, U, Np, Pu
30. Paramagnetic behavior of Actinide ions in NMR spectroscopy
31. Derivation of Lanthanide Series Crystal Field Parameters From First Principles
32. Insight of the Metal–Ligand Interaction in f‐Element Complexes by Paramagnetic NMR Spectroscopy
33. Assessing the exchange coupling in binuclear lanthanide(iii) complexes and the slow relaxation of the magnetization in the antiferromagnetically coupled Dy2 derivative† †Electronic supplementary information (ESI) available: Additional magnetic data, additional figures and computational details. CCDC 1020818–1020822. For ESI and crystallographic data in CIF or other electronic format see DOI: 10.1039/c5sc01029b
34. Octahedral Hexachloro Environment of Dy3+ with Slow Magnetic Relaxation and Luminescent Properties.
35. Temperature Dependence of 1H Paramagnetic Chemical Shifts in Actinide Complexes, Beyond Bleaney's Theory: The AnVIO22+–Dipicolinic Acid Complexes (An=Np, Pu) as an Example.
36. Etude du comportement paramagnétique des actinides en solution par RMN
37. Actinides behavior in solution with polyaminocarboxylates cyclic ligands
38. Study of Actinide cations in solution through their paramagnetic behavior
39. Crystal Structure and Magnetic Properties of Peacock-Weakley Type Polyoxometalates Na9[Ln(W5O18)2] (Ln = Tm, Yb): Rare Example of Tm(III) SMM.
40. Magnetic Coupling in the Ce(III) Dimer Ce2(COT)3
41. Crystal Field in Rare‐Earth Complexes: From Electrostatics to Bonding
42. Hysteresis in a bimetallic holmium complex: A synergy between electronic and nuclear magnetic interactions
43. Magnetic circular dichroism of UCl6− in the ligand-to-metal charge-transfer spectral region
44. Paramagnetism of Aqueous Actinide Cations. Part II: Theoretical Aspects and New Measurements on An(IV)
45. Unraveling σ and π Effects on Magnetic Anisotropy incis-NiA4B2Complexes: Magnetization, HF-HFEPR Studies, First-Principles Calculations, and Orbital Modeling
46. Bi‐Compartmental Schiff‐Base with Peripheral Ester Functionalization: Synthesis and Magnetic Behavior of Bimetallic Zn‐Ln Complexes (Ln = Dy, Tb, Gd)
47. Tools for Predicting the Nature and Magnitude of Magnetic Anisotropy in Transition Metal Complexes: Application to Co(II) Complexes
48. Magnetic Coupling in the Ce(III) Dimer Ce2(COT)3.
49. Magnetic Coupling in the Ce(III) Dimer Ce2(COT)3
50. Magnetic susceptibility of actinide(iii) cations: an experimental and theoretical study
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