Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research focused on Ferroelectricity and Supramolecular chemistry, with related work in Phase transition, Intermolecular force, Perrhenate. Notable publications include 'The Soft Molecular Polycrystalline Ferroelectric Realized by the Fluorination Effect', 'Record Enhancement of Phase Transition Temperature Realized by H/F Substitution', and 'Directional Intermolecular Interactions for Precise Molecular Design of a High- T c Multiaxial Molecular Ferroelectric'.
“Green” Oxidant (Oxygen) Mediated Synthesis of <i>N</i>-(2-(Methylsulfonyl)ethyl)amide Derivatives Using DMSO as a Dual Synthon and Solvent
Bistable Optoelectronic Properties Originated from the Scissoring Motion of the TEMPO Skeleton in Supramolecular Radical Ferroelectrics
The First High‐Temperature Supramolecular Radical Ferroics
High-Temperature Switchable Nonlinear Optical and Dielectric Material Revealed by Molecular Modification
The Soft Molecular Polycrystalline Ferroelectric Realized by the Fluorination Effect
Record Enhancement of Phase Transition Temperature Realized by H/F Substitution
Organic Ferroelectric Vortex–Antivortex Domain Structure
DMSO/<i>t</i>-BuONa/O<sub>2</sub>-Mediated Aerobic Dehydrogenation of Saturated <i>N</i>-Heterocycles
Directional Intermolecular Interactions for Precise Molecular Design of a High-<i>T</i><sub>c</sub> Multiaxial Molecular Ferroelectric