Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commercial technical applications has been hampered by inherently challenging processing difficulties. In the early 1990s, the interest in KN ceramics was revived by the pursuit of Pb-free piezoceramics. More recently the search for inexpensive photovoltaic materials alternative to Si prompted bandgap engineering studies in KN-based solid solutions. If the ferroelectric and piezoelectric properties of KN-based ceramics are now well established, the understanding of chemical doping on the bandgap of KN-based ceramics is still in its infancy. Here we provide a brief review on the current understanding of the structure-property relationships in this cla...
Lead-free piezoelectric materials have received increasing attention in the last decade, driven by e...
Lead zirconate titanate (PZT) based ceramics are currently enjoying a wide use in piezoelectric devi...
Investigations in the development of lead-free (1 − x)(K0.5Na0.5)NbO3-xLiNbO3 piezoelectric cerami...
Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commerci...
The crystal structure of (1-x)KNbO3–xBiFeO3 (KNBF) and (1-x)KNbO3-LaFeO3 (KNLF) (where x=0.00; 0.01;...
Abstract: (1 − x)KNbO3–xBiMnO3 (0 ≤ x ≤ 0.25) ceramics were prepared by the solid‐state reaction met...
This present work is focused on band-gap engineering of solid-solutions based on KNbO3, which was pr...
The direct optical bandgap in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me = Fe or Mn) ceramics fabricated by...
The optical bandgap of orthorhombic ferroelectric KNbO3 is shown to be continuously controllable via...
The band gap of (1 − x)KNbO3-x(Ba0.5Bi0.5)(Nb0.5Zn0.5)O3 (0 ≤ x ≤ 0.25) ceramics narrows slightly fr...
Ferroelectric materials are widely used in capacitors, actuators, non-volatile memory, electro-optic...
Ferroelectric oxides are a group of advanced electronic materials with a wide variety of properties ...
Nowadays, new environmentally friendly, lead-free piezoelectric materials have been developed to rep...
The phase transition, microscopic morphology and optical and ferroelectric properties are studied in...
The direct optical band gap in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me=Fe or Mn) ceramics fabricated by ...
Lead-free piezoelectric materials have received increasing attention in the last decade, driven by e...
Lead zirconate titanate (PZT) based ceramics are currently enjoying a wide use in piezoelectric devi...
Investigations in the development of lead-free (1 − x)(K0.5Na0.5)NbO3-xLiNbO3 piezoelectric cerami...
Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commerci...
The crystal structure of (1-x)KNbO3–xBiFeO3 (KNBF) and (1-x)KNbO3-LaFeO3 (KNLF) (where x=0.00; 0.01;...
Abstract: (1 − x)KNbO3–xBiMnO3 (0 ≤ x ≤ 0.25) ceramics were prepared by the solid‐state reaction met...
This present work is focused on band-gap engineering of solid-solutions based on KNbO3, which was pr...
The direct optical bandgap in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me = Fe or Mn) ceramics fabricated by...
The optical bandgap of orthorhombic ferroelectric KNbO3 is shown to be continuously controllable via...
The band gap of (1 − x)KNbO3-x(Ba0.5Bi0.5)(Nb0.5Zn0.5)O3 (0 ≤ x ≤ 0.25) ceramics narrows slightly fr...
Ferroelectric materials are widely used in capacitors, actuators, non-volatile memory, electro-optic...
Ferroelectric oxides are a group of advanced electronic materials with a wide variety of properties ...
Nowadays, new environmentally friendly, lead-free piezoelectric materials have been developed to rep...
The phase transition, microscopic morphology and optical and ferroelectric properties are studied in...
The direct optical band gap in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me=Fe or Mn) ceramics fabricated by ...
Lead-free piezoelectric materials have received increasing attention in the last decade, driven by e...
Lead zirconate titanate (PZT) based ceramics are currently enjoying a wide use in piezoelectric devi...
Investigations in the development of lead-free (1 − x)(K0.5Na0.5)NbO3-xLiNbO3 piezoelectric cerami...