Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Chemistry, Dysprosium, Magnet, Lanthanide, Metallocene, and Single-molecule magnet.
A Linear Dysprosium(II) Metallocene with a High Effective Energy Barrier and Magnetic Hysteresis up to 70 Kelvin
η<sup>6</sup>-Benzene Tetra-Anion Complexes of Early and Late Rare-Earth Metals
Discovery of a Dysprosium Metallocene Single-Molecule Magnet with Two High-Temperature Orbach Processes
Isolation of a Perfectly Linear Uranium(II) Metallocene
Ethene Activation and Catalytic Hydrogenation by a Low-Valent Uranium Pentalene Complex
Magnetic hysteresis up to 80 kelvin in a dysprosium metallocene single-molecule magnet
A Dysprosium Metallocene Single‐Molecule Magnet Functioning at the Axial Limit
A Dysprosium Metallocene Single‐Molecule Magnet Functioning at the Axial Limit
Influencing the properties of dysprosium single-molecule magnets with phosphorus donor ligands
Magneto-structural correlations in arsenic- and selenium-ligated dysprosium single-molecule magnets
Addition of pnictogen atoms to chromium(<scp>ii</scp>): synthesis, structure and magnetic properties of a chromium(<scp>iv</scp>) phosphide and a chromium(<scp>iii</scp>) arsenide
Transmetalation of Chromocene by Lithium-Amide, -Phosphide, and -Arsenide Nucleophiles
A High Anisotropy Barrier in a Sulfur‐Bridged Organodysprosium Single‐Molecule Magnet
A hydride-ligated dysprosium single-molecule magnet
Single-Molecule Magnetism in Tetrametallic Terbium and Dysprosium Thiolate Cages
A High Anisotropy Barrier in a Sulfur‐Bridged Organodysprosium Single‐Molecule Magnet
Spin crossover in phosphorus- and arsenic-bridged cyclopentadienyl-manganese(ii) dimers
Exchange-coupled oxygen- and sulfur-bridged cyclopentadienyl-manganese(<scp>ii</scp>) cages
Frontiers in Molecular Main Group Chemistry: a web themed issue