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Keyword [ferroelectric materials]
Result: 1 - 20 | Page: 1 of 2
1. Study On The Fracture And Fatigue Of Ferroelectric Materials
2. Theoretical Study On Size Effects Of The Phase Transition And Dielectric Properties In Quasi-low Dimensional Ferroelectric Materials
3. Doping Modification Of Bi4Ti3O12 Ferroelectric Thin Films Prepared By Sol-gel Method
4. Investigation On The Structure And Dielectric Properties Of Barium Strontium Titanate Microwave Ferroelectric Materials Doped With Magnesia
5. Investigation Of The Dielectric Properties In Magnetic Relaxor Ferroelectrics
6. Investigation On The Barium Strontium Titanate Microwave Ferroelectric Materials With Modifying Elements
7. First-principles Study On Optical Properties Of Si Nanoparticles And Ferroelectric Materials
8. Investigations On Fabrication, Structure And Properties Of Perovskite Lead-Free Ferroelectric Materials
9. Doped Layered Perovskite Ferroelectric Materials, Ferroelectric And Relaxor Dielectric Performance
10. Doped Ferroelectric Materials Sr <sub> 2 </ Sub> Of Bi <sub> 4 </ Sub> Ti <sub> 5 </ Sub> O (18) Performance Of The Study
11. Doping And Symbiosis Research On Ferroelectric Materials Bi <sub> 3 </ Sub> Tinbo <sub> 9 </ Sub> Structure And Performance
12. Magnetocaloric Effect In Pure And Doped Magnetic Relaxor Ferroelectrics CdCr2S4
13. Dynamic Fracture Mechanics Of Ferroelectric Solids
14. The Optical And Transport Properties Modulation And Applications Of Ferroelectric Materials
15. First Principles Studies Of Perovskite Multiferroic Materials And Ferroelectric Materials
16. Research Of Terahertz Modulation Properties Based On Ba0.6Sr0.4TiO3 Ferroelectric Materials
17. The Study On The Properties Of The BiFe0.9Cr0.1O3 Solid Solution BiCrO3/BiFeO3 Bilayer Composite Films
18. Investigation On K0.5Na0.5NbO3-based Films For Energy Storage And Ferroelectric Photovoltaic Effect
19. Research On Modulation Of Terahertz Wave Based On Ferroelectric Materials And Metasurfaces
20. Study On The Modulation Characteristics Of One-dimensional Photonic Crystal Based On Ferroelectric Materials In The Terahertz Band
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