The Experts below are selected from a list of 54 Experts worldwide ranked by ideXlab platform

Roberta Sessoli - One of the best experts on this subject based on the ideXlab platform.

  • Angular-Resolved Magnetometry beyond Triclinic Crystals Part II: Torque Magnetometry of Cp∗ErCOT Single-Molecule Magnets
    Chemistry - A European Journal, 2014
    Co-Authors: Mauro Perfetti, Giuseppe Cucinotta, Fadi Elhallak, Marie Emmanuelle Boulon, Song Gao, Roberta Sessoli
    Abstract:

    Angular-resolved single-crystal magnetometry is a key tool to characterise lanthanide-based materials with low symmetry, for which conjectures based on idealised geometries can be totally misleading. Unfortunately the technique is strictly successful only for triclinic structures, thus reducing significantly its application. By collecting out-of-Equilibrium Magnetisation data the technique was extended to the orthorhombic organometallic Cp*ErCOT single-molecule magnet (SMM), thus allowing for the first time the reconstruction of the molecular anisotropy tensor notwithstanding the two molecular orientations in the crystal lattice. The results, flanked by state-of-the-art ab initio calculations, confirmed the expected orientation of the molecular easy axis of Magnetisation and thus validated the synthetic strategy based on organometallic complexes of a single lanthanide ion.

  • Angular‐Resolved Magnetometry Beyond Triclinic Crystals: Out‐of‐Equilibrium Studies of Cp*ErCOT Single‐Molecule Magnet
    Chemistry: A European Journal, 2013
    Co-Authors: Marie Emmanuelle Boulon, Giuseppe Cucinotta, Shang-da Jiang, Liviu Ungur, Liviu F. Chibotaru, Roberta Sessoli
    Abstract:

    Angular-resolved single-crystal magnetometry is a key tool to characterise lanthanide-based materials with low symmetry, for which conjectures based on idealised geometries can be totally misleading. Unfortunately the technique is strictly successful only for triclinic structures, thus reducing significantly its application. By collecting out-of-Equilibrium Magnetisation data the technique was extended to the orthorhombic organometallic Cp*ErCOT single-molecule magnet (SMM), thus allowing for the first time the reconstruction of the molecular anisotropy tensor notwithstanding the two molecular orientations in the crystal lattice. The results, flanked by state-of-the-art ab initio calculations, confirmed the expected orientation of the molecular easy axis of Magnetisation and thus validated the synthetic strategy based on organometallic complexes of a single lanthanide ion.

Mauro Perfetti - One of the best experts on this subject based on the ideXlab platform.

  • Angular-Resolved Magnetometry beyond Triclinic Crystals Part II: Torque Magnetometry of Cp∗ErCOT Single-Molecule Magnets
    Chemistry - A European Journal, 2014
    Co-Authors: Mauro Perfetti, Giuseppe Cucinotta, Fadi Elhallak, Marie Emmanuelle Boulon, Song Gao, Roberta Sessoli
    Abstract:

    Angular-resolved single-crystal magnetometry is a key tool to characterise lanthanide-based materials with low symmetry, for which conjectures based on idealised geometries can be totally misleading. Unfortunately the technique is strictly successful only for triclinic structures, thus reducing significantly its application. By collecting out-of-Equilibrium Magnetisation data the technique was extended to the orthorhombic organometallic Cp*ErCOT single-molecule magnet (SMM), thus allowing for the first time the reconstruction of the molecular anisotropy tensor notwithstanding the two molecular orientations in the crystal lattice. The results, flanked by state-of-the-art ab initio calculations, confirmed the expected orientation of the molecular easy axis of Magnetisation and thus validated the synthetic strategy based on organometallic complexes of a single lanthanide ion.

Marie Emmanuelle Boulon - One of the best experts on this subject based on the ideXlab platform.

  • Angular-Resolved Magnetometry beyond Triclinic Crystals Part II: Torque Magnetometry of Cp∗ErCOT Single-Molecule Magnets
    Chemistry - A European Journal, 2014
    Co-Authors: Mauro Perfetti, Giuseppe Cucinotta, Fadi Elhallak, Marie Emmanuelle Boulon, Song Gao, Roberta Sessoli
    Abstract:

    Angular-resolved single-crystal magnetometry is a key tool to characterise lanthanide-based materials with low symmetry, for which conjectures based on idealised geometries can be totally misleading. Unfortunately the technique is strictly successful only for triclinic structures, thus reducing significantly its application. By collecting out-of-Equilibrium Magnetisation data the technique was extended to the orthorhombic organometallic Cp*ErCOT single-molecule magnet (SMM), thus allowing for the first time the reconstruction of the molecular anisotropy tensor notwithstanding the two molecular orientations in the crystal lattice. The results, flanked by state-of-the-art ab initio calculations, confirmed the expected orientation of the molecular easy axis of Magnetisation and thus validated the synthetic strategy based on organometallic complexes of a single lanthanide ion.

  • Angular‐Resolved Magnetometry Beyond Triclinic Crystals: Out‐of‐Equilibrium Studies of Cp*ErCOT Single‐Molecule Magnet
    Chemistry: A European Journal, 2013
    Co-Authors: Marie Emmanuelle Boulon, Giuseppe Cucinotta, Shang-da Jiang, Liviu Ungur, Liviu F. Chibotaru, Roberta Sessoli
    Abstract:

    Angular-resolved single-crystal magnetometry is a key tool to characterise lanthanide-based materials with low symmetry, for which conjectures based on idealised geometries can be totally misleading. Unfortunately the technique is strictly successful only for triclinic structures, thus reducing significantly its application. By collecting out-of-Equilibrium Magnetisation data the technique was extended to the orthorhombic organometallic Cp*ErCOT single-molecule magnet (SMM), thus allowing for the first time the reconstruction of the molecular anisotropy tensor notwithstanding the two molecular orientations in the crystal lattice. The results, flanked by state-of-the-art ab initio calculations, confirmed the expected orientation of the molecular easy axis of Magnetisation and thus validated the synthetic strategy based on organometallic complexes of a single lanthanide ion.

Giuseppe Cucinotta - One of the best experts on this subject based on the ideXlab platform.

  • Angular-Resolved Magnetometry beyond Triclinic Crystals Part II: Torque Magnetometry of Cp∗ErCOT Single-Molecule Magnets
    Chemistry - A European Journal, 2014
    Co-Authors: Mauro Perfetti, Giuseppe Cucinotta, Fadi Elhallak, Marie Emmanuelle Boulon, Song Gao, Roberta Sessoli
    Abstract:

    Angular-resolved single-crystal magnetometry is a key tool to characterise lanthanide-based materials with low symmetry, for which conjectures based on idealised geometries can be totally misleading. Unfortunately the technique is strictly successful only for triclinic structures, thus reducing significantly its application. By collecting out-of-Equilibrium Magnetisation data the technique was extended to the orthorhombic organometallic Cp*ErCOT single-molecule magnet (SMM), thus allowing for the first time the reconstruction of the molecular anisotropy tensor notwithstanding the two molecular orientations in the crystal lattice. The results, flanked by state-of-the-art ab initio calculations, confirmed the expected orientation of the molecular easy axis of Magnetisation and thus validated the synthetic strategy based on organometallic complexes of a single lanthanide ion.

  • Angular‐Resolved Magnetometry Beyond Triclinic Crystals: Out‐of‐Equilibrium Studies of Cp*ErCOT Single‐Molecule Magnet
    Chemistry: A European Journal, 2013
    Co-Authors: Marie Emmanuelle Boulon, Giuseppe Cucinotta, Shang-da Jiang, Liviu Ungur, Liviu F. Chibotaru, Roberta Sessoli
    Abstract:

    Angular-resolved single-crystal magnetometry is a key tool to characterise lanthanide-based materials with low symmetry, for which conjectures based on idealised geometries can be totally misleading. Unfortunately the technique is strictly successful only for triclinic structures, thus reducing significantly its application. By collecting out-of-Equilibrium Magnetisation data the technique was extended to the orthorhombic organometallic Cp*ErCOT single-molecule magnet (SMM), thus allowing for the first time the reconstruction of the molecular anisotropy tensor notwithstanding the two molecular orientations in the crystal lattice. The results, flanked by state-of-the-art ab initio calculations, confirmed the expected orientation of the molecular easy axis of Magnetisation and thus validated the synthetic strategy based on organometallic complexes of a single lanthanide ion.

Fadi Elhallak - One of the best experts on this subject based on the ideXlab platform.

  • Angular-Resolved Magnetometry beyond Triclinic Crystals Part II: Torque Magnetometry of Cp∗ErCOT Single-Molecule Magnets
    Chemistry - A European Journal, 2014
    Co-Authors: Mauro Perfetti, Giuseppe Cucinotta, Fadi Elhallak, Marie Emmanuelle Boulon, Song Gao, Roberta Sessoli
    Abstract:

    Angular-resolved single-crystal magnetometry is a key tool to characterise lanthanide-based materials with low symmetry, for which conjectures based on idealised geometries can be totally misleading. Unfortunately the technique is strictly successful only for triclinic structures, thus reducing significantly its application. By collecting out-of-Equilibrium Magnetisation data the technique was extended to the orthorhombic organometallic Cp*ErCOT single-molecule magnet (SMM), thus allowing for the first time the reconstruction of the molecular anisotropy tensor notwithstanding the two molecular orientations in the crystal lattice. The results, flanked by state-of-the-art ab initio calculations, confirmed the expected orientation of the molecular easy axis of Magnetisation and thus validated the synthetic strategy based on organometallic complexes of a single lanthanide ion.