Nanocrystalline Pr3+ substituted NBT was synthesized using hydrothermal technique. Pr3+ modifies the ferroelectric NBT optically active and enhances the electrical properties with small structural changes. Aiming to the development of the bottom up optoelectronic devices this optimized nanoscale Na0.5Bi0.5-xPrxTiO3(x = 0.005) compound is synthesized hydrothermally. X-ray diffraction pattern shows that the system is stabilized in the Rhombohedral (space groupR3c) phase indicating the local strain inhomogeneity. PE loop shows that there is a decrement in the Ec value compared with compounds synthesized using conventional methods. The strong red emission assigned to prominent transition of the Pr3+ ions at 610nm was observed along with weak bl...
Piezo-/ferroelectrics form an important class of functional materials that can transduce mechanical ...
(1-y)Na0.5Bi0.5TiO3-(y)BaTiO3 (NBT-BT) is one of the most investigated lead-free piezoelectric syste...
Ferroelectric materials are an essential part of our technological society because of their dielectr...
In this work, we report the simultaneous optimization of the relaxor properties and photoluminescenc...
Comprehensive investigations on the effect of mechanical and chemical processing techniques on struc...
We present a comprehensive investigation on the dependence of Nd3+ substitution on various propertie...
Multi-functional materials possessing two or more desirable properties in a single entity have attra...
The single phase nano-crystalline lead-free Na0.5Bi0.5TiO3 (NBT) synthesized using hydrothermal tech...
Nd3+-substituted lead free 0.94(Na0.5Bi0.5-XNdXTiO3)-0.06BaTiO3 (x=0, 0.01) ceramics were synthesize...
International audiencePotassium niobate-lead titanate solid-solution nanoparticles have been synthes...
Herein, we present comprehensive investigations of the optical and electrical properties of Nd3+ sub...
Eu+3 was incorporated into the lattice of a lead-free ferroelectric Na1/2Bi1/2TiO3 (NBT) as per the ...
cited By 5International audienceThe effect of Pr3+ addition on structural, electrical, and optical p...
Reversible luminescence photoswitching upon photochromic reactions with excellent reproducibility is...
Er/Pr-doped K0.5Na0.5NbO3 ceramics have been fabricated and the effects of Pr3+ on their photolumine...
Piezo-/ferroelectrics form an important class of functional materials that can transduce mechanical ...
(1-y)Na0.5Bi0.5TiO3-(y)BaTiO3 (NBT-BT) is one of the most investigated lead-free piezoelectric syste...
Ferroelectric materials are an essential part of our technological society because of their dielectr...
In this work, we report the simultaneous optimization of the relaxor properties and photoluminescenc...
Comprehensive investigations on the effect of mechanical and chemical processing techniques on struc...
We present a comprehensive investigation on the dependence of Nd3+ substitution on various propertie...
Multi-functional materials possessing two or more desirable properties in a single entity have attra...
The single phase nano-crystalline lead-free Na0.5Bi0.5TiO3 (NBT) synthesized using hydrothermal tech...
Nd3+-substituted lead free 0.94(Na0.5Bi0.5-XNdXTiO3)-0.06BaTiO3 (x=0, 0.01) ceramics were synthesize...
International audiencePotassium niobate-lead titanate solid-solution nanoparticles have been synthes...
Herein, we present comprehensive investigations of the optical and electrical properties of Nd3+ sub...
Eu+3 was incorporated into the lattice of a lead-free ferroelectric Na1/2Bi1/2TiO3 (NBT) as per the ...
cited By 5International audienceThe effect of Pr3+ addition on structural, electrical, and optical p...
Reversible luminescence photoswitching upon photochromic reactions with excellent reproducibility is...
Er/Pr-doped K0.5Na0.5NbO3 ceramics have been fabricated and the effects of Pr3+ on their photolumine...
Piezo-/ferroelectrics form an important class of functional materials that can transduce mechanical ...
(1-y)Na0.5Bi0.5TiO3-(y)BaTiO3 (NBT-BT) is one of the most investigated lead-free piezoelectric syste...
Ferroelectric materials are an essential part of our technological society because of their dielectr...