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2. Effect of the Matrix Subsystem on Piezoelectric Properties and Related Parameters of Lead-Free 1–3-Type Composites Based on Domain-Engineered Single Crystals

3. Understanding the effect of porosity on the polarisation-field response of ferroelectric materials

4. Piezoelectric Sensitivity and Anisotropy in 1–3-Type Composites Based on Lead-Free Ferroelectrics

6. From Microgeometry to Improved Properties of Piezo-Particulate Composites

7. Experimental Studies on Effective Properties and Related Parameters of Piezo-Particulate Composites

8. Prediction of Effective Properties of Composites Based on Ferroelectric Ceramics

9. Modelling of the Composite Structure Formation During Dielectrophoresis

10. Aspects of Composite Manufacturing

11. Piezo-Active Composites: Classification and Effective Physical Properties

13. Improving Piezoelectric Sensitivity

14. Piezoelectric Coefficients : New Opportunities to Improve Sensitivity

15. Microgeometry of Composites and Their Piezoelectric Coefficients

16. Piezoelectric Coefficients : Combination of Properties at Specific Microgeometry

17. Effective Piezoelectric Coefficients : From Microgeometry to Anisotropy

18. The Piezoelectric Medium and Piezoelectric Sensitivity

19. From a Unit Cell to Morphotropic Polydomain/Heterophase Structures

21. Three-Phase States

22. Overlapping Structures and Transition Regions

23. Phase Coexistence Under Electric Field

24. Crystallographic Aspects of Interfaces in Ferroelectrics and Related Materials

26. Electromechanical Coupling Factors and Their Anisotropy in Piezoelectric and Ferroelectric Materials

27. Piezoelectric Mechanical Energy Harvesters and Related Materials

28. The Piezoelectric Medium and Its Characteristics

29. Figures of Merit of Modern Piezo-Active Ceramics and Composites

30. Conclusions

31. Conclusions

35. The Piezoelectric Medium and Its Electromechanical Properties

36. Orientation Effects in Single-Domain Single Crystals

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