Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Chemistry, Ground state, Crystallography, Excited state, and Electronic structure.
Magnetic anisotropy and structural flexibility in the field-induced single ion magnets [Co{(OPPh<sub>2</sub>)(EPPh<sub>2</sub>)N}<sub>2</sub>], E = S, Se, explored by experimental and computational methods
Electronic Structure of Tetrahedral,<i>S</i>= 2, [Fe{(EP<i><sup>i</sup></i>Pr<sub>2</sub>)<sub>2</sub>N}<sub>2</sub>], E = S, Se, Complexes: Investigation by High-Frequency and -Field Electron Paramagnetic Resonance,<sup>57</sup>Fe Mössbauer Spectroscopy, and Quantum Chemical Studies
Magnetic Properties and Electronic Structure of the <i>S</i> = 2 Complex [Mn<sup>III</sup>{(OPPh<sub>2</sub>)<sub>2</sub>N}<sub>3</sub>] Showing Field-Induced Slow Magnetization Relaxation
Magnetostructural correlations in S = 1 trans-[Ni{(OPPh2)(EPPh2)N}2(dmso)2], E = S, Se, and related complexes
Magnetic Anisotropy of Tetrahedral Co<sup>II</sup> Single-Ion Magnets: Solid-State Effects
Direct Observation of Very Large Zero-Field Splitting in a Tetrahedral Ni<sup>II</sup>Se<sub>4</sub> Coordination Complex
Investigating Magnetostructural Correlations in the Pseudooctahedral<i>trans</i>-[Ni<sup>II</sup>{(OPPh<sub>2</sub>)(EPPh<sub>2</sub>)N}<sub>2</sub>(sol)<sub>2</sub>] Complexes (E = S, Se; sol = DMF, THF) by Magnetometry, HFEPR, and ab Initio Quantum Chemistry