Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, Magnetism in coordination complexes, and Lanthanide and Transition Metal Complexes.
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
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
Synthesis, crystal structure and magnetic properties of a dinuclear dysprosium single-molecule magnet
Two 3D Isostructural Ln(III)-MOFs: Displaying the Slow Magnetic Relaxation and Luminescence Properties in Detection of Nitrobenzene and Cr<sub>2</sub>O<sub>7</sub><sup>2–</sup>
Transitions of two magnetic interaction states in dinuclear Dy(<scp>iii</scp>) complexes via subtle structural variations
Two Isostructural Metal–Organic Frameworks Directed by the Different Center Metal Ions, Exhibiting the Ferrimagnetic Behavior and Slow Magnetic Relaxation
Fine-tuning terminal solvent ligands to rationally enhance the energy barrier in dinuclear dysprosium single-molecule magnets
Recent advances in the design of magnetic molecules for use as cryogenic magnetic coolants
Structural diversity of five new bitriazole-based complexes: luminescence, sorption, and magnetic properties
Anion‐Templated Assembly and Magnetocaloric Properties of a Nanoscale {Gd<sub>38</sub>} Cage versus a {Gd<sub>48</sub>} Barrel
Wheel-shaped nanoscale 3d–4f {CoII16LnIII24} clusters (Ln = Dy and Gd)
Multifunctional Dy<sup>III</sup><sub>4</sub> Cluster Exhibiting White‐Emitting, Ferroelectric and Single‐Molecule Magnet Behavior
Gadolinium(III)‐Hydroxy Ladders Trapped in Succinate Frameworks with Optimized Magnetocaloric Effect
A Six-Coordinate Ytterbium Complex Exhibiting Easy-Plane Anisotropy and Field-Induced Single-Ion Magnet Behavior
The First {Dy<sub>4</sub>} Single-Molecule Magnet with a Toroidal Magnetic Moment in the Ground State
A large cryogenic magnetocaloric effect exhibited at low field by a 3D ferromagnetically coupled Mn(ii)–Gd(iii) framework material
Symmetry-Related [Ln<sup>III</sup><sub>6</sub>Mn<sup>III</sup><sub>12</sub>] Clusters toward Single-Molecule Magnets and Cryogenic Magnetic Refrigerants