The direct optical band gap in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me=Fe or Mn) ceramics fabricated by the solid state reaction method varies from 3.2 eV for KNbO3 down to 2.2 eV for 0.95KNbO3-0.05BiYbO3, as revealed by optical spectroscopic ellipsometry. This narrowing of band gap is accompanied by an apparent increase of the room-temperature relative permittivity from 320 for KNbO3 to 900 for 0.95KNbO3-0.05BiYbO3. All compositions studied exhibit dielectric anomalies associated with structural phase transitions and their ferroelectric nature is corroborated by the presence of a sharp mixed mode (at ~190 cm-1) and by a Fano-type resonant dip in their Raman spectra
Ba(Ni0.5Nb0.5)O2.75 (BNNO) doped KNbO3 (KN) and (K0.5Na0.5)NbO3 (KNN), abbreviated as KBNNO and KNBN...
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 direct optical bandgap in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me = Fe or Mn) ceramics fabricated by...
The optical band gap of orthorhombic ferroelectric KNbO3 is shown to be continuously controllable vi...
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 crystal structure of (1-x)KNbO3–xBiFeO3 (KNBF) and (1-x)KNbO3-LaFeO3 (KNLF) (where x=0.00; 0.01;...
The band gap of (1 − x)KNbO3-x(Ba0.5Bi0.5)(Nb0.5Zn0.5)O3 (0 ≤ x ≤ 0.25) ceramics narrows slightly fr...
The band gap of (1-x)KNbO3-x(Ba0.5Bi0.5)(Nb0.5Zn0.5)O3 (0≤x≤0.25) ceramics narrows slightly from 3.2...
Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commerci...
Ferroelectric materials with engineered thus visible-range optical band gaps are increasingly resear...
Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commerci...
Ferroelectric materials are widely used in capacitors, actuators, non-volatile memory, electro-optic...
In-situ Raman spectroscopy shows the simultaneous incorporation of small amounts of Bi3+ and Yb3+ in...
Ba(Ni0.5Nb0.5)O2.75 (BNNO) doped KNbO3 (KN) and (K0.5Na0.5)NbO3 (KNN), abbreviated as KBNNO and KNBN...
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 direct optical bandgap in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me = Fe or Mn) ceramics fabricated by...
The optical band gap of orthorhombic ferroelectric KNbO3 is shown to be continuously controllable vi...
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 crystal structure of (1-x)KNbO3–xBiFeO3 (KNBF) and (1-x)KNbO3-LaFeO3 (KNLF) (where x=0.00; 0.01;...
The band gap of (1 − x)KNbO3-x(Ba0.5Bi0.5)(Nb0.5Zn0.5)O3 (0 ≤ x ≤ 0.25) ceramics narrows slightly fr...
The band gap of (1-x)KNbO3-x(Ba0.5Bi0.5)(Nb0.5Zn0.5)O3 (0≤x≤0.25) ceramics narrows slightly from 3.2...
Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commerci...
Ferroelectric materials with engineered thus visible-range optical band gaps are increasingly resear...
Ferroelectric KNbO3 (KN) ceramics were first fabricated in the 1950s, however, their use in commerci...
Ferroelectric materials are widely used in capacitors, actuators, non-volatile memory, electro-optic...
In-situ Raman spectroscopy shows the simultaneous incorporation of small amounts of Bi3+ and Yb3+ in...
Ba(Ni0.5Nb0.5)O2.75 (BNNO) doped KNbO3 (KN) and (K0.5Na0.5)NbO3 (KNN), abbreviated as KBNNO and KNBN...
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...