Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research focused on Dielectric and Orthorhombic crystal system, with related work in Solid solution, Microstructure, Ferroelectricity. Notable publications include 'Controllable τ f value of barium silicate microwave dielectric ceramics with different Ba/Si ratios', 'Weak ferroelectricity and low-permittivity microwave dielectric properties of Ba 2 Zn (1+x) Si 2 O (7+x) ceramics', and 'Crystal structure, defect chemistry and radio frequency relaxor characteristics of Ce-Doped SrTiO3 perovskite'.
Structure and synergy performance of (1-x)Sr0.25Ce0.5TiO3 -xLa(Mg0.5Ti0.5)O3 based microwave dielectric ceramics for 5G architecture
Dielectric abnormality and high-permittivity microwave dielectric properties of SrO-TiO2-CeO2 solid solution
Controllable τ <sub>f</sub> value of barium silicate microwave dielectric ceramics with different Ba/Si ratios
Weak ferroelectricity and low-permittivity microwave dielectric properties of Ba 2 Zn (1+x) Si 2 O (7+x) ceramics
Crystal structure, defect chemistry and radio frequency relaxor characteristics of Ce-Doped SrTiO3 perovskite
Phase-microstructure evolution and microwave dielectric characteristic of (1− x )(Sr 0.5 Ce 0.5 )TiO 3+δ − x NdAlO 3 solid solution
Perovskite structure and low frequency relaxor- like- dielectric response of (Sr,Ce)TiO3 solid solution
Dielectric and ferroelectric behavior of an incipient ferroelectric Sr<sub>(1−3x/2)</sub>Ce<sub>x</sub>TiO<sub>3</sub>novel solid solution
Synthesis strategy, phase-chemical structure and microwave dielectric properties of paraelectric Sr(1−3/2)Ce TiO3 ceramics
Improving microwave dielectric properties of temperature - compensated Mg(1.04–1.5y)CeyTiO3 - based Ceramics with high quality factor