Area of research
Materials Chemistry · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Materials science, Ferroelectricity, Chemistry, Composite number, Piezoelectricity, and Enantiomer.
Seismic performance of coupled steel composite shear walls with replaceable coupling beams
Constructing a rigid-flexible grid structure for simultaneously strengthening and toughening bamboo flour/plastic composites through the introduction of continuous carbon fabric meshes via multi-layer co-extrusion
Two host–guest grown ether supramolecules show switchable phase transition, dielectric and second-harmonic generation effect
Experimental study on seismic behaviors of the welded L-shaped double steel plate-concrete composite shear wall
Development Research of the Double “L” Shaped Steel Plate-Concrete Composite Shear Wall
The Soft Molecular Polycrystalline Ferroelectric Realized by the Fluorination Effect
High‐<i>T</i><sub>c</sub> Enantiomeric Ferroelectrics Based on Homochiral Dabco‐derivatives (Dabco=1,4‐Diazabicyclo[2.2.2]octane)
Record Enhancement of Phase Transition Temperature Realized by H/F Substitution
Superior Transverse Piezoelectricity in a Halide Perovskite Molecular Ferroelectric Thin Film
Homochiral Nickel Nitrite ABX<sub>3</sub> (X = NO<sub>2</sub><sup>–</sup>) Perovskite Ferroelectrics
Six-Fold Vertices in a Single-Component Organic Ferroelectric with Most Equivalent Polarization Directions
Highest-<i>T</i><sub>c</sub> organic enantiomeric ferroelectrics obtained by F/H substitution
High‐<i>T</i><sub>c</sub> Enantiomeric Ferroelectrics Based on Homochiral Dabco‐derivatives (Dabco=1,4‐Diazabicyclo[2.2.2]octane)
Nano-composite of Co<sub>3</sub>O<sub>4</sub>and Cu with enhanced stability and catalytic performance for non-enzymatic electrochemical glucose sensors