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Your search keyword '"Wang, Genshui"' showing total 22 results

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22 results on '"Wang, Genshui"'

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1. Temperature-dependent antiferroelectric properties in La3+ doped PbHfO3 thin films with enhanced energy storage density and stability.

2. High-entropy relaxor ferroelectric ceramics for ultrahigh energy storage.

3. NaNbO3‐Based Multilayer Ceramic Capacitors with Ultrahigh Energy Storage Performance.

4. Ultrahigh polarization Bi0.5Na0.5TiO3-based relaxor ceramics for force-electric conversion.

5. Superior Energy Density Achieved in Unfilled Tungsten Bronze Ferroelectrics via Multiscale Regulation Strategy.

6. High polarization stability of Sr modified Pb(Zr,Sn)NbO3 antiferroelectric ceramics.

7. High‐energy storage density in NaNbO3‐modified (Bi0.5Na0.5)TiO3‐BiAlO3‐based lead‐free ceramics under low electric field.

8. Nondestructively measuring the remanent polarization of PZT 95/5 ceramics at room temperature.

9. Tunable antiferroelectric ceramic polarization via regulating incommensurate phase and domain features.

10. Tunable equivalent dielectric constant and superior energy storage stability in relaxor-like antiferroelectric PLZT ceramic.

11. Ultrahigh energy storage performance in AN-based superparaelectric ceramics.

12. Designing lead-free Barium Strontium Titanate-based weakly coupled relaxor ferroelectric ceramics with simultaneous high energy density and efficiency via Bi3+ lone pair covalent effect.

13. Significantly enhanced energy storage performance by constructing TiO2 nanowire arrays in PbZrO3-based antiferroelectric films.

14. Enhanced energy storage properties of silver niobate ceramics under hydrostatic pressure.

15. Effect of Mn-doping on dielectric and energy storage properties of (Pb0.91La0.06)(Zr0.96Ti0.04)O3 antiferroelectric ceramics.

16. Enhanced breakdown strength and energy density of antiferroelectric Pb,La(Zr,Sn,Ti)O3 ceramic by forming core-shell structure.

18. Linear composition-dependent phase transition behavior and energy storage performance of tetragonal PLZST antiferroelectric ceramics.

19. Effects of Ti-doping on energy storage properties and cycling stability of Pb0.925La0.05ZrO3 antiferroelectric thin films.

21. Superior energy storage performances achieved in (Ba, Sr)TiO3-based bulk ceramics through composition design and Core-shell structure engineering.

22. Enhanced energy storage performance in Pb0.97La0.02(ZrxSn0.90-xTi0.10)O3 antiferroelectric ceramics.

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