Area of research
Electronic, Optical and Magnetic Materials · Materials Chemistry
Research interest
Research interests include Chemistry, Crystallography, Magnetic anisotropy, Ion, Bipyramid, and Symmetry (geometry).
Hydrogen-Bonded Framework of a Cobalt(II) Complex Showing Superior Stability and Field-Induced Slow Magnetic Relaxation
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
Advanced Spectroscopic and Computational Studies of a Cobalt(II) Coordination Polymer with Single-Ion-Magnet Properties
Optimal N–Co–N bite angle for enhancing the magnetic anisotropy of zero-field Co(II) single-ion magnets in tetrahedral [N4] coordination environment
A Trinuclear Zinc Coordination Cluster Exhibiting Fluorescence, Colorimetric Sensitivity, and Recycling of Silver Ion and Detection of Cupric Ion
Controlling Electron Spin Decoherence in Nd-based Complexes via Symmetry Selection
Manipulation of Molecular Qubits by Isotope Effect on Spin Dynamics
Hexagonal Bipyramidal Dy(III) Complexes as a Structural Archetype for Single-Molecule Magnets
Modulating magnetic dynamics through tailoring the terminal ligands in Dy<sub>2</sub> single-molecule magnets
Concise Chemistry Modulation of the SMM Behavior within a Family of Mononuclear Dy(III) Complexes
Dramatic impact of the lattice solvent on the dynamic magnetic relaxation of dinuclear dysprosium single-molecule magnets
ToxR Is Required for Biofilm Formation and Motility of Vibrio Parahaemolyticus.
Capping N‐Donor Ligands Modulate the Magnetic Dynamics of Dy<sup>III</sup> β‐Diketonate Single‐Ion Magnets with <i>D</i><sub>4<i>d</i></sub> Symmetry
Electrostatic Potential Determined Magnetic Dynamics Observed in Two Mononuclear β-Diketone Dysprosium(III) Single-Molecule Magnets
Isomeric ligands enhance the anisotropy barrier within nine-coordinated {Dy<sub>2</sub>} compounds
Magnetic Interaction Affecting the Zero-Field Single-Molecule Magnet Behaviors in Isomorphic {Ni<sup>II</sup><sub>2</sub>Dy<sup>III</sup><sub>2</sub>} and {Co<sup>II</sup><sub>2</sub>Dy<sup>III</sup><sub>2</sub>} Tetranuclear Complexes
Fine-tuning terminal solvent ligands to rationally enhance the energy barrier in dinuclear dysprosium single-molecule magnets
Experimental and theoretical investigations of four 3d–4f butterfly single-molecule magnets
A family of tetranuclear quinolinolate Dy(<scp>iii</scp>)-based single-molecule magnets: effects of periphery ligand replacement on their magnetic relaxation