Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Perovskite Materials and Applications, Solid-state spectroscopy and crystallography, Nonlinear Optical Materials Research, and Metal-Organic Frameworks: Synthesis and Applications.
Mathematical Double‐Matrix Switchable Homochiral Ferroelectric
Enantiomeric Ferroelectric Chiral Domains
Asymmetric Coordination Designed Heterocrown Ether Host–Guest Ferroelectrics with Ultrahigh <i>T</i><sub>c</sub>
Photoluminescence and switchable dielectric properties of (R/S-3-hydroxypiperidinium)MnCl3 with high-temperature phase transitions
Mathematical Double‐Matrix Switchable Homochiral Ferroelectric
Unconventional Inverse Temperature Symmetry Breaking in a Ferroelastic Crystal
Resonant Second-Harmonic Generation in a Hybrid Manganese Bromide: [3-Quinuclidinone]<sub>2</sub>MnBr<sub>4</sub>
Enantiomeric Fe(<scp>ii</scp>)-incorporated organic–inorganic hybrid crystals for energy harvesting
The role of anionic design in modulating material properties: from SHG switching to ferroelastic switching
A Chiral Organic Radical Ferroelectric with Magnetic Circular Dichroism
A Multiferroic Spin‐Crossover Molecular Crystal
Homochiral organic ferroelastics with plastic phase transition
Discovery of Ferroelectricity in the Fullerene Adduct C<sub>60</sub>S<sub>8</sub>
The First Ring Enlargement Induced Large Piezoelectric Response in a Polycrystalline Molecular Ferroelectric
H/F Substitution Achieved Enantiomeric Organic Inorganic Hybrid Perovskites and Trigonal Structure [DMFP]<sub>3</sub>(CdBr<sub>3</sub>)(CdBr<sub>4</sub>)
H/F Substitution on the Spacer Cations Leads to 1D-to-2D Increment of the Pyrrolidinium-Containing Lead Iodide Hybrid Perovskites