Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Dielectric and Ferroelectricity, with related work in Piezoelectricity, Dipole, Ceramic. Notable publications include 'NaNbO 3 ‐(Bi 0.5 Li 0.5 )TiO 3 Lead‐Free Relaxor Ferroelectric Capacitors with Superior Energy‐Storage Performances via Multiple Synergistic Design', 'Giant electric field–induced strain in lead-free piezoceramics', and 'Supercritical Relaxor Nanograined Ferroelectrics for Ultrahigh‐Energy‐Storage Capacitors'.
Giant electrocaloric effect in high-polar-entropy perovskite oxides
High temperature stable capacitive energy storage up to 320 °C in high-entropy dielectric thin film
Ultra-high energy storage in relaxor ferroelectric MLCCs at elevated temperatures via entropy modulated strain heterogeneity
Local heterogeneous dipolar structures drive gigantic capacitive energy storage in antiferroelectric ceramics
Harnessing Multisite High-Entropy Architecture for Ultrahigh Energy Storage Multilayer Capacitors
Unleashing pyroelectricity enhancement via phase transition–driven defect alignment in KNN-based ferroelectrics
Design of hierarchical-heterostructure antiferroelectrics for ultrahigh capacitive energy storage
Ni nanoparticles with high thermal stability for methane dry reforming
A highly polarizable concentrated dipole glass for ultrahigh energy storage
Temperature stability lock of high-performance lead-free relaxor ferroelectric ceramics
Temperature-dependent antiferroelectric properties in La3+ doped PbHfO3 thin films with enhanced energy storage density and stability
Bio-inspired engineering of Bi<sub>2</sub>S<sub>3</sub>–PPy composite for the efficient electrocatalytic reduction of carbon dioxide
Topological Vortex Domain Engineering for High Dielectric Energy Storage Performance
Delayed Polarization Saturation Induced Superior Energy Storage Capability of BiFeO<sub>3</sub>‐Based Ceramics Via Introduction of Non‐Isovalent Ions
High Energy Storage Performance of PZO/PTO Multilayers via Interface Engineering
Giant electric field–induced strain in lead-free piezoceramics
Supercritical Relaxor Nanograined Ferroelectrics for Ultrahigh‐Energy‐Storage Capacitors
Discovery of electric devil’s staircase in perovskite antiferroelectric
Supercritical Relaxor Nanograined Ferroelectrics for Ultrahigh‐Energy‐Storage Capacitors (Adv. Mater. 34/2022)
NaNbO<sub>3</sub>‐(Bi<sub>0.5</sub>Li<sub>0.5</sub>)TiO<sub>3</sub> Lead‐Free Relaxor Ferroelectric Capacitors with Superior Energy‐Storage Performances via Multiple Synergistic Design
Unveiling the ferrielectric nature of PbZrO3-based antiferroelectric materials
High piezoelectricity and stable output in BaHfO3 and (Bi0.5Na0.5)ZrO3 modified (K0.5Na0.5)(Nb0.96Sb0.04)O3 textured ceramics