The optical bandgap of orthorhombic ferroelectric KNbO3 is shown to be continuously controllable via Bi and Fe co-substitution according to a K1-xBixNb1-xFexO3 doping mechanism. The room temperature X-ray diffraction data combined with Raman spectroscopy analysis show the polar orthorhombic crystal structure to persist up to x = 0.25, while the bandgap narrows monotonically by 1 eV (∼33%). In-situ Raman spectroscopy corroborates the polar nature of all compositions in the temperature range of –100 to 200 °C. The ability to control the bandgap while maintaining the spontaneous polarisation makes the K1-xBixNb1-xFexO3 system interesting for photoinduced processes in a wide temperature range
Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commerci...
Ferroelectric materials have been demonstrated to be promising in developing emerging photovoltaic t...
Abstract Niobate perovskites like the (K,Na)NbO3 (KNN) family are among the most important lead-fre...
The optical band gap of orthorhombic ferroelectric KNbO3 is shown to be continuously controllable vi...
The direct optical bandgap in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me = Fe or Mn) ceramics fabricated by...
The direct optical band gap in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me=Fe or Mn) ceramics fabricated by ...
Abstract: (1 − x)KNbO3–xBiMnO3 (0 ≤ x ≤ 0.25) ceramics were prepared by the solid‐state reaction met...
The crystal structure of (1-x)KNbO3–xBiFeO3 (KNBF) and (1-x)KNbO3-LaFeO3 (KNLF) (where x=0.00; 0.01;...
This present work is focused on band-gap engineering of solid-solutions based on KNbO3, which was pr...
The phase transition, microscopic morphology and optical and ferroelectric properties are studied in...
In the progress of exploring lead-free ferroelectric perovskites, a new solid solution of (1-x) KNbO...
Ferroelectric materials are widely used in capacitors, actuators, non-volatile memory, electro-optic...
Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commerci...
Both Raman scattering and infrared reflectivity measurements have been performed to determine the co...
Ferroelectric materials have been demonstrated to be promising in developing emerging photovoltaic t...
Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commerci...
Ferroelectric materials have been demonstrated to be promising in developing emerging photovoltaic t...
Abstract Niobate perovskites like the (K,Na)NbO3 (KNN) family are among the most important lead-fre...
The optical band gap of orthorhombic ferroelectric KNbO3 is shown to be continuously controllable vi...
The direct optical bandgap in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me = Fe or Mn) ceramics fabricated by...
The direct optical band gap in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me=Fe or Mn) ceramics fabricated by ...
Abstract: (1 − x)KNbO3–xBiMnO3 (0 ≤ x ≤ 0.25) ceramics were prepared by the solid‐state reaction met...
The crystal structure of (1-x)KNbO3–xBiFeO3 (KNBF) and (1-x)KNbO3-LaFeO3 (KNLF) (where x=0.00; 0.01;...
This present work is focused on band-gap engineering of solid-solutions based on KNbO3, which was pr...
The phase transition, microscopic morphology and optical and ferroelectric properties are studied in...
In the progress of exploring lead-free ferroelectric perovskites, a new solid solution of (1-x) KNbO...
Ferroelectric materials are widely used in capacitors, actuators, non-volatile memory, electro-optic...
Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commerci...
Both Raman scattering and infrared reflectivity measurements have been performed to determine the co...
Ferroelectric materials have been demonstrated to be promising in developing emerging photovoltaic t...
Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commerci...
Ferroelectric materials have been demonstrated to be promising in developing emerging photovoltaic t...
Abstract Niobate perovskites like the (K,Na)NbO3 (KNN) family are among the most important lead-fre...