Area of research
Electronic, Optical and Magnetic Materials · Atomic and Molecular Physics, and Optics
Research interest
Research focused on Ceramic and Magnetostriction, with related work in Dielectric, Multiferroics, Composite material. Notable publications include 'Greatly enhanced discharge energy density and efficiency of novel relaxation ferroelectric BNT–BKT-based ceramics', 'GANet: Goal Area Network for Motion Forecasting', and 'Largely enhanced energy storage capability of a polymer nanocomposite utilizing a core-satellite strategy'.
Modulated magnetostriction and multiferroic properties in the PVDF-based cobalt ferrite particulate composites
Multiferroic properties in poly(vinylidene-fluoride)-based magnetostrictive/piezoelectric laminate composites
GANet: Goal Area Network for Motion Forecasting
Ultrahigh energy density and efficiency of BaTiO3-based ceramics via multiple design strategies
Excellent thermal stability and high energy storage performances of BNT-based ceramics via phase-structure engineering
Hierarchically Engineered Manganite Thin Films with a Wide-Temperature-Range Colossal Magnetoresistance Response
Microstructure, magnetodielectric and multiferroic properties in PVDF-based sandwich-structured composites
Greatly enhanced discharge energy density and efficiency of novel relaxation ferroelectric BNT–BKT-based ceramics
Polypyrrole random-coil induced permittivity from negative to positive in all-organic composite films
Largely enhanced energy storage capability of a polymer nanocomposite utilizing a core-satellite strategy