Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Chemistry, Crystallography, Ion, Magnet, Ligand (biochemistry), and Dysprosium.
Magnetic Anisotropy and Relaxation in Four-Coordinate Cobalt(II) Single-Ion Magnets with a [Co<sup>II</sup>O<sub>4</sub>] Core
Magnetic properties of two coordination isomeric cobalt(<scp>ii</scp>) single-ion magnets
Axial Ligand as a Critical Factor for High-Performance Pentagonal Bipyramidal Dy(III) Single-Ion Magnets
Tuning the Equatorial Negative Charge in Hexagonal Bipyramidal Dysprosium(III) Single-Ion Magnets to Improve the Magnetic Behavior
Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(<scp>iii</scp>) single-ion magnets
Magnetic Anisotropy from Easy-Plane to Easy-Axial in Square Pyramidal Cobalt(II) Single-Ion Magnets
Slow Magnetic Relaxation in a Co(III)–Co(II)–Co(III) Mixed-Valence Complex with Negative Anisotropy
Slow magnetic relaxation in dinuclear Co(<scp>iii</scp>)–Co(<scp>ii</scp>) complexes containing a five-coordinated Co(<scp>ii</scp>) centre with easy-axis anisotropy
A cyanometallate- and carbonate-bridged dysprosium chain complex with a pentadentate macrocyclic ligand: synthesis, structure, and magnetism
Optimal N–Co–N bite angle for enhancing the magnetic anisotropy of zero-field Co(II) single-ion magnets in tetrahedral [N4] coordination environment
Tuning the ligand field in seven-coordinate Dy(<scp>iii</scp>) complexes to perturb single-ion magnet behavior
Observation of field-induced single-ion magnet behavior in an octahedral dysprosium complex with a strong ligand field
Bulky anion supported a five-coordinate spin-crossover cobalt(II) complex with slow magnetic relaxation
Germanium-based complex derived porous GeO2 nanoparticles for building high performance Li-ion batteries