Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Developments in Eu+2‐Doped Strontium Aluminate and Polymer/Strontium Aluminate Composite

View through CrossRef
ABSTRACTThe discovery of rare earth based phosphors in 1960s started a new era of luminescence. In comparison with sulfide‐based phosphors, strontium aluminates received worldwide acceptance because of their chemical stability and good luminescent properties. The SrAlxOy:Eu2+,Dy3+ phosphors excited by UV or visible light emit phosphorescence in the blue‐green region after the excitation source has been removed, and the phosphorescence last for more than 15 h. The major disadvantage of SrAlxOy:Eu2+,Dy3+ phosphors is that they are prone to hydrolysis and their luminescent properties gradually deteriorate. The dispersion of these phosphors in a waterproof polymer matrix is an alternative method reported for retaining their luminescent properties. The review extensively deals with strontium aluminate based luminescent materials, the mechanism of luminescence, their synthesis techniques, and different mixing procedures to prepare polymer/strontium aluminate composites. Different methods to improve the dispersion of the strontium aluminate in the polymer matrix are also outlined.
Title: Developments in Eu+2‐Doped Strontium Aluminate and Polymer/Strontium Aluminate Composite
Description:
ABSTRACTThe discovery of rare earth based phosphors in 1960s started a new era of luminescence.
In comparison with sulfide‐based phosphors, strontium aluminates received worldwide acceptance because of their chemical stability and good luminescent properties.
The SrAlxOy:Eu2+,Dy3+ phosphors excited by UV or visible light emit phosphorescence in the blue‐green region after the excitation source has been removed, and the phosphorescence last for more than 15 h.
The major disadvantage of SrAlxOy:Eu2+,Dy3+ phosphors is that they are prone to hydrolysis and their luminescent properties gradually deteriorate.
The dispersion of these phosphors in a waterproof polymer matrix is an alternative method reported for retaining their luminescent properties.
The review extensively deals with strontium aluminate based luminescent materials, the mechanism of luminescence, their synthesis techniques, and different mixing procedures to prepare polymer/strontium aluminate composites.
Different methods to improve the dispersion of the strontium aluminate in the polymer matrix are also outlined.

Related Results

Celestite
Celestite
Celestite (strontium sulphate SrSO4) and strontianite (strontium carbonate SrCO 3) are the two principal strontium minerals; the former is the more common and by far the chief co...
Photocatalytic degradation of organic pollutants using yttrium and copper co-doped nickel aluminate
Photocatalytic degradation of organic pollutants using yttrium and copper co-doped nickel aluminate
Abstract Spinel nickel aluminate was synthesized using the sol-gel process and citric acid as a capping agent. Parent nickel aluminate, yttrium-doped nickel aluminate, and ...
Nanogold and nanosilver hybrid polymer materials
Nanogold and nanosilver hybrid polymer materials
<p>Significant opportunities exist in both the scientific and industrial sectors for the development of new generation hybrid materials. These multifunctional hybrid material...
Barrier Polymers
Barrier Polymers
AbstractBarrier polymers are used for many packaging and protective applications. As barriers they separate a system, such as an article of food or an electronic component, from an...
Barrier Polymers
Barrier Polymers
AbstractBarrier polymers are used for many packaging and protective applications. As barriers they separate a system, such as an article of food or an electronic component, from an...
Extending Polymer Flooding Towards High-Temperature and High-Salinity Carbonate Reservoirs
Extending Polymer Flooding Towards High-Temperature and High-Salinity Carbonate Reservoirs
Abstract Polymer flooding is a mature EOR technique successfully applied in both sandstone and carbonate reservoirs. ADNOC has developed a new EOR roadmap with the o...
DL-Polylactide (DL-PLA) Based Polyaniline Composite for Hydrogen Gas Sensors
DL-Polylactide (DL-PLA) Based Polyaniline Composite for Hydrogen Gas Sensors
Different inorganic acids like HCl, HNO3, H2SO4 and H3PO4-doped based DL-PLA/PANI-ES composites were synthesized by in-situ chemical oxidation polymerization technique using liquid...

Back to Top