Lead-based perovskite relaxor ferroelectrics are widely used as materials for numerous applications due to their extraordinary dielectric, piezoelectric, and electrostrictive properties. While the mechanisms of relaxor behavior are disputable, the importance of quenched (static) random electric fields created at nanoscale by the disordered heterovalent cations has been well recognized. Meanwhile, an increasing amount of scientific and technological efforts has been concentrated on lead-free perovskites, in particular, solid solutions of classical ferroelectric BaTiO 3 (BT), which better meet ecological requirements. Among BT-based solutions the homovalent systems are elaborately studied where strong random electric fields are absent, while ...
The dielectric properties of Ba1xCaxTiO3 (x = 0.17) ceramics were studied in a wide frequency range...
It is well known that disordered relaxor ferroelectrics exhibit local polar correlations. The origin...
Relaxor ferroelectrics are a class of disordered crystals with very high piezoelectric effect [1]. I...
Numerous questions regarding the nature of BNT-derived relaxor ferroelectrics are addressed on the b...
Relaxor ferroelectrics are complex oxide materials which are rather unique to study the effects of c...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
We address the unsolved question on the structure of relaxor ferroelectrics at the atomic level by c...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
A number of relaxor ferroelectric ceramics have been demonstrated to possess a near stable value of ...
Relaxor ferroelectricity is one of the most widely investigated but the least understood material cl...
Electromechanical actuation in piezoceramics is usually enhanced by creating chemically homogeneous ...
The dielectric properties of Ba1xCaxTiO3 (x = 0.17) ceramics were studied in a wide frequency range...
It is well known that disordered relaxor ferroelectrics exhibit local polar correlations. The origin...
Relaxor ferroelectrics are a class of disordered crystals with very high piezoelectric effect [1]. I...
Numerous questions regarding the nature of BNT-derived relaxor ferroelectrics are addressed on the b...
Relaxor ferroelectrics are complex oxide materials which are rather unique to study the effects of c...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
We address the unsolved question on the structure of relaxor ferroelectrics at the atomic level by c...
Lead-based relaxor ferroelectrics are key functional materials indispensable for the production of m...
A number of relaxor ferroelectric ceramics have been demonstrated to possess a near stable value of ...
Relaxor ferroelectricity is one of the most widely investigated but the least understood material cl...
Electromechanical actuation in piezoceramics is usually enhanced by creating chemically homogeneous ...
The dielectric properties of Ba1xCaxTiO3 (x = 0.17) ceramics were studied in a wide frequency range...
It is well known that disordered relaxor ferroelectrics exhibit local polar correlations. The origin...
Relaxor ferroelectrics are a class of disordered crystals with very high piezoelectric effect [1]. I...