Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Ferroelectricity, Materials science, Chemistry, Phase transition, Perovskite (structure), and Enantiomer.
Mathematical Double‐Matrix Switchable Homochiral Ferroelectric
Enantiomeric Ferroelectric Chiral Domains
Giant mechanical tunability by a coordination bond strategy in a 3D hybrid cyanide double perovskite ferroelastic with reconstructive phase transition
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>
The role of anionic design in modulating material properties: from SHG switching to ferroelastic switching
A Chiral Organic Radical Ferroelectric with Magnetic Circular Dichroism
Metal-Free Enantiomeric Organic Crystals for Piezoelectric Energy Harvesting
A Multiferroic Spin‐Crossover Molecular Crystal
Biodegradable Ferroelectric Molecular Plastic Crystal HOCH<sub>2</sub>(CF<sub>2</sub>)<sub>7</sub>CH<sub>2</sub>OH Structurally Inspired by Polyvinylidene Fluoride
Switchable coordination bonds in 3D cyano-bridged perovskite ferroelastics: achieving the largest leap of symmetry breaking and enhanced dielectric switching performance
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>)
Solid–Liquid Crystal Biphasic Ferroelectrics with Tunable Biferroelectricity
Unprecedented Ferroelectricity and Ferromagnetism in a Cr<sup>2+</sup>‐Based Two‐Dimensional Hybrid Perovskite
Axial-Chiral BINOL Multiferroic Crystals with Coexistence of Ferroelectricity and Ferroelasticity
H/F Substitution on the Spacer Cations Leads to 1D-to-2D Increment of the Pyrrolidinium-Containing Lead Iodide Hybrid Perovskites
Chemical design of homochiral heterocyclic organic ferroelectric crystals
H/F substitution for advanced molecular ferroelectrics
Coexistence of magnetic and electric orderings in a divalent Cr<sup>2+</sup>-based multiaxial molecular ferroelectric
A hybrid organic-inorganic perovskite with robust SHG switching
An organic plastic ferroelectric with high Curie point
Enantiomeric perovskite with a dual phase transition at high temperature
Highest-<i>T</i><sub>c</sub> single-component homochiral organic ferroelectrics
Target Designing Phase Transition Materials through Halogen Substitution