Giant energy density and high efficiency achieved in silver niobate-based lead-free antiferroelectric ceramic capacitors via domain engineering
Song Li(Chinese Academy of Sciences), Xianlin Dong(Chinese Academy of Sciences), Tengfei Hu(Chinese Academy of Sciences), Fangfang Xu(Chinese Academy of Sciences), Hengchang Nie(Chinese Academy of Sciences), Zhengqian Fu(Shanghai Institute of Ceramics), Genshui Wang(Chinese Academy of Sciences), Chenhong Xu(Chinese Academy of Sciences)
Cited by 249
Related Papers
Novel BaTiO <sub>3</sub> -based lead-free ceramic capacitors featuring high energy storage density, high power density, and excellent stability
|Journal of Materials Chemistry C|2018|535
Antiferroelectrics for Energy Storage Applications: a Review
|Advanced Materials Technologies|2018|513
Wake-up effects in Si-doped hafnium oxide ferroelectric thin films
|Applied Physics Letters|2013|401
Novel Sodium Niobate-Based Lead-Free Ceramics as New Environment-Friendly Energy Storage Materials with High Energy Density, High Power Density, and Excellent Stability
|ACS Sustainable Chemistry & Engineering|2018|325