Polycrystalline Er3+/Yb3+ co-doped CaMoO4 (CaMoO4:Er3+/Yb3+) film was successfully fabricated by a spray coating method. Crystal structure, surface morphology and upconversion (UC) luminescent properties were investigated. Under 980-nm excitation, CaMoO4:Er3+/Yb3+ film exhibited strong green UC emissions at 530 and 550 nm (2H,11/2 --> 4S3/2 - 4I15/2) visible to the naked eye with a weak red emission near 660 nm (4F9/2 --> 4I15/2) corresponding to the intra 4f transitions of Er3+. A possible UC mechanism related to the pump-power dependence is discussed in detail.This research was supported by a grant from the Academic Research Program of Korea National University of Transportation in 2013
For the first time, CaMoO4: xEu3+ (x = 0.02, 0.04, 0.06, 0.08, 0.1) red phosphor nanoparticles were ...
In this article, the synthesis by means of the spray pyrolysis method, of the CaMoO4 and rare-earth ...
We investigated the upconversion properties of nanocrystalline and bulk Y2O3:Er3+ as a function of t...
The upconversion (UC) luminescence properties of polycrystalline Er3+/Yb3+ co-doped CaMoO4 synthesiz...
The polycrystalline Li+/Er3+/Yb3+ tri-doped CaMoO4 were prepared by complex citrate-gel method. Unde...
A green lighting upconversion (UC) system was successfully achieved from Er3+/Yb3+ co-doped BaMoO4 s...
Li+/Tm3+/Yb3+ co-doped CaMoO4 upconversion (UC) phosphor was prepared by complex citrate-gel method ...
The upconversion (UC) luminescence properties of polycrystalline Er3+/Yb3+ co-doped NaLa(MoO4)(2) ph...
Y2O3 thin films doped with different concentrations of erbium ions and co-doped with 10 mol% of ytte...
National Nature Science Foundation of China [11474104, 51372092]; China Postdoctoral Science Foundat...
Er, Yb and Er,Yb : Y2O3 thin films were deposited by an aerosol assisted MO-CVD atmospheric process....
The Stokes emission of nanocrystalline and bulk Y2O3:Er3+, Yb3+ following 488 nm were reported. Two ...
Green phosphors Er:Yb:KY(WO4)(2) doped with various Er3+ and Yb3+ concentrations were synthesized by...
Powders of Y2O3 co-doped with Yb3+ and Er3+ composed of well-crystallized nanoparticles (30 to 50 nm...
Uniform mixed CaMoO4–CaWO4 micro-/nano-materials have been successfully synthesised by a facile hydr...
For the first time, CaMoO4: xEu3+ (x = 0.02, 0.04, 0.06, 0.08, 0.1) red phosphor nanoparticles were ...
In this article, the synthesis by means of the spray pyrolysis method, of the CaMoO4 and rare-earth ...
We investigated the upconversion properties of nanocrystalline and bulk Y2O3:Er3+ as a function of t...
The upconversion (UC) luminescence properties of polycrystalline Er3+/Yb3+ co-doped CaMoO4 synthesiz...
The polycrystalline Li+/Er3+/Yb3+ tri-doped CaMoO4 were prepared by complex citrate-gel method. Unde...
A green lighting upconversion (UC) system was successfully achieved from Er3+/Yb3+ co-doped BaMoO4 s...
Li+/Tm3+/Yb3+ co-doped CaMoO4 upconversion (UC) phosphor was prepared by complex citrate-gel method ...
The upconversion (UC) luminescence properties of polycrystalline Er3+/Yb3+ co-doped NaLa(MoO4)(2) ph...
Y2O3 thin films doped with different concentrations of erbium ions and co-doped with 10 mol% of ytte...
National Nature Science Foundation of China [11474104, 51372092]; China Postdoctoral Science Foundat...
Er, Yb and Er,Yb : Y2O3 thin films were deposited by an aerosol assisted MO-CVD atmospheric process....
The Stokes emission of nanocrystalline and bulk Y2O3:Er3+, Yb3+ following 488 nm were reported. Two ...
Green phosphors Er:Yb:KY(WO4)(2) doped with various Er3+ and Yb3+ concentrations were synthesized by...
Powders of Y2O3 co-doped with Yb3+ and Er3+ composed of well-crystallized nanoparticles (30 to 50 nm...
Uniform mixed CaMoO4–CaWO4 micro-/nano-materials have been successfully synthesised by a facile hydr...
For the first time, CaMoO4: xEu3+ (x = 0.02, 0.04, 0.06, 0.08, 0.1) red phosphor nanoparticles were ...
In this article, the synthesis by means of the spray pyrolysis method, of the CaMoO4 and rare-earth ...
We investigated the upconversion properties of nanocrystalline and bulk Y2O3:Er3+ as a function of t...