Javascript must be enabled to continue!
SYNTHESIS AND LUMINESCENCE OF CERIUM DOPED KSrY(BO3)2
View through CrossRef
The rare-earth borate compounds are widely used in various fields of science and technology as solid-state lasers, LEDs, and plasma panels. Development of blue emitting phosphors typically involves doping with cerium ions various matrices, exhibiting high photoluminescence quantum yields for LEDs. However, the main problem of such compounds, in addition to the concentration quenching, is the presence in the matrix of both the trivalent Ce3+ and tetravalent Ce4+ states of cerium ions. The goal. Study of the luminescent properties of the new KSrY0.95(BO3)2:0.05Ce3+ compound. Experimental. New phosphors based on complex borate KSrY(BO3)2 doped with cerium ions have been obtained by the solid-phase synthesis. The mixture of the starting materials after grinding in an agate mortar has been calcined at 700°C in a platinum crucible for 12 hours. The calcination temperature has been increased in steps of 50°C with re-ground of the mixture at each stage. The KSrY0.95(BO3)2:0.05Ce3+sample has been annealed in hydrogen at 900°C for 8 hours. Results and discussion. The X-ray phase analysis has shown that the new compound crystallizes in the monoclinic space group P21/m. The calculated unit cell parameters for KSrY0.95(BO3)2:0.05Ce3+are: a = 9.2861(23) Å, b = 5.3654(6) Å, c = 6.5854(14) Å, V = 289.7(1) Å3. In the crystal structure of KSrY(BO3)2, each B atom is connected to three O atoms, forming a BO3 triangle. The planar groups (BO3)3 are distributed layer by layer in the plane. The Y atoms are surrounded by six oxygen atoms, forming an octahedral structure and occupying interlayer positions.Ce3+ ions in the crystal lattice mainly replace the Y+3positions based on the similarity of the ionic radius and valency of Y+3 (r = 0.90 Å, CN = VI), Ce3+ (r = 1.01 Å, CN = VI). Conclusion. At a wavelength of 440 nm, the excitation spectrum exhibits one absorption band with the 2F7/2 → 5D1 energy transition, which corresponds to the excitation of the cerium ion from the ground state to the excited state. A decrease in the luminescence intensity of the KSrY0.95(BO3)2:0.05Ce3+ sample has been found for 3 hours after its annealing.
A.B. Bekturov Institute of Chemical Sciences
Title: SYNTHESIS AND LUMINESCENCE OF CERIUM DOPED KSrY(BO3)2
Description:
The rare-earth borate compounds are widely used in various fields of science and technology as solid-state lasers, LEDs, and plasma panels.
Development of blue emitting phosphors typically involves doping with cerium ions various matrices, exhibiting high photoluminescence quantum yields for LEDs.
However, the main problem of such compounds, in addition to the concentration quenching, is the presence in the matrix of both the trivalent Ce3+ and tetravalent Ce4+ states of cerium ions.
The goal.
Study of the luminescent properties of the new KSrY0.
95(BO3)2:0.
05Ce3+ compound.
Experimental.
New phosphors based on complex borate KSrY(BO3)2 doped with cerium ions have been obtained by the solid-phase synthesis.
The mixture of the starting materials after grinding in an agate mortar has been calcined at 700°C in a platinum crucible for 12 hours.
The calcination temperature has been increased in steps of 50°C with re-ground of the mixture at each stage.
The KSrY0.
95(BO3)2:0.
05Ce3+sample has been annealed in hydrogen at 900°C for 8 hours.
Results and discussion.
The X-ray phase analysis has shown that the new compound crystallizes in the monoclinic space group P21/m.
The calculated unit cell parameters for KSrY0.
95(BO3)2:0.
05Ce3+are: a = 9.
2861(23) Å, b = 5.
3654(6) Å, c = 6.
5854(14) Å, V = 289.
7(1) Å3.
In the crystal structure of KSrY(BO3)2, each B atom is connected to three O atoms, forming a BO3 triangle.
The planar groups (BO3)3 are distributed layer by layer in the plane.
The Y atoms are surrounded by six oxygen atoms, forming an octahedral structure and occupying interlayer positions.
Ce3+ ions in the crystal lattice mainly replace the Y+3positions based on the similarity of the ionic radius and valency of Y+3 (r = 0.
90 Å, CN = VI), Ce3+ (r = 1.
01 Å, CN = VI).
Conclusion.
At a wavelength of 440 nm, the excitation spectrum exhibits one absorption band with the 2F7/2 → 5D1 energy transition, which corresponds to the excitation of the cerium ion from the ground state to the excited state.
A decrease in the luminescence intensity of the KSrY0.
95(BO3)2:0.
05Ce3+ sample has been found for 3 hours after its annealing.
Related Results
Ba3Tb(BO3)3 ∶Ce3+ : a green emitting phosphor for white LED
Ba3Tb(BO3)3 ∶Ce3+ : a green emitting phosphor for white LED
Two green emitting phosphors, Ba3Tb(BO3)3 and Ba3Tb(BO3)3 ∶Ce3+, are synthesized by the high temperature solid-state method, and their luminescent characteristics are investigated....
Warm-white emitting Dy³⁺ and Eu³⁺ coactivated NaSrY(BO3)2 phosphors for solid-state lighting
Warm-white emitting Dy³⁺ and Eu³⁺ coactivated NaSrY(BO3)2 phosphors for solid-state lighting
Abstract
Dy3+ and Eu3+ coactivated NaSrY(BO3)2 phosphors were prepared using a solid-state diffusion method. Singly doped NaSrY(BO3)2: Dy3+ phosphors showed dual emission...
Cerium oxalate precipitation: effect of process and operating parameters on cerium oxalate particle size distribution
Cerium oxalate precipitation: effect of process and operating parameters on cerium oxalate particle size distribution
Abstract
The oxalate precipitation process has been adopted for the reconversion of plutonium nitrate present in nitric acid solution to plut...
Développement et caractérisations de systèmes complexes pour l’extraction du cérium en milieu CO2 supercritique
Développement et caractérisations de systèmes complexes pour l’extraction du cérium en milieu CO2 supercritique
Le développement et le recyclage de métaux à forte valeur ajoutée, notamment les terres rares, est devenu un enjeu économique et industriel majeur ces dernières années. L’extractio...
MAINTAINING STABLE NANODISPERSED CERIUM OXIDE FOR HEAT TRANSFER PROCESSES
MAINTAINING STABLE NANODISPERSED CERIUM OXIDE FOR HEAT TRANSFER PROCESSES
The introduction of heat carriers progressive types causes the productivity of heat exchange systems to increase. One of the challenges in thermal applied applications is the searc...
A Way to Create Mn-Containing GdFe3(BO3)4 and the Dopant Effecton Its Magnetic Properties
A Way to Create Mn-Containing GdFe3(BO3)4 and the Dopant Effecton Its Magnetic Properties
A wide series of substitutions in a subsystem of small radii cations M = Al, Cr, Fe, Ga, Sc is possible in rare-earth borates ReM3(BO3)4 with the huntite structure. However, the ex...
Phase Relations in the Ln2O3–Cr2O3–B2O3 (Ln = Gd–Lu) Ternary Oxide Systems
Phase Relations in the Ln2O3–Cr2O3–B2O3 (Ln = Gd–Lu) Ternary Oxide Systems
In this work, isothermal sections of the Ln2O3–Cr2O3–B2O3 (Ln = Gd–Lu) ternary oxide systems at 900, 1000, and 1100 °C were constructed by determining the phase relations by using ...
Preparation of Cerium Oxide Nanoparticles and Their Cytotoxicity Evaluation In vitro and In vivo
Preparation of Cerium Oxide Nanoparticles and Their Cytotoxicity Evaluation In vitro and In vivo
Background: Nanotechnology plays a significant role in medicine, especially in diagnosis and treatment as a carrier to drugs and vaccinology. Several studies were conducted using n...

