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Europium Oxide Nanopowder

Europium Oxide Nanopowder

Europium Oxide Nanopowder
Product No NRE-3019
CAS No. 1308-96-9
Formula Eu2O3
APS <100nm  (Can be Customized)
Purity 99.9%
Color white
Molecular Weight 351.9262 g/mol
Density  7.42 g/cm3
Melting Point  2350 °C
Boiling Point 4118°C

Europium Oxide Nanopowder

Europium(III) oxide (Eu2O3), is a synthetic compound of europium and oxygen. It is broadly utilized as a red or blue phosphor in TVs and fluorescent lights, and as an activator for yttrium-based phosphors. It is likewise an operator for the production of fluorescent glass. Europium fluorescence is utilized as a part of the counter duplicating phosphors in Euro banknotes.

Applications

Phosphors and Luminescent Materials

Fluorescent Lighting and Displays: Europium oxide is widely used in the production of phosphorescent materials for lighting and display technologies. When doped into phosphor compounds, Eu₂O₃ enhances the red emission used in cathode ray tubes (CRTs), flat-panel displays (FPDs), and LED lighting. Europium-doped phosphors are essential in the creation of high-efficiency lighting and display systems due to their ability to emit bright, stable, and efficient light.

Television and Display Screens: Europium oxide nanoparticles are used as red phosphors in LCD screens, OLED displays, and LED lighting. The red-emitting phosphors are crucial for improving color accuracy and brightness in modern display technologies, offering vivid and high-quality images.

Bioimaging and Biomedical Applications

Fluorescence Imaging: Europium oxide nanoparticles are extensively used in bioimaging due to their strong fluorescence properties. When excited by UV or visible light, Eu₂O₃ nanoparticles emit a bright, stable fluorescence, making them suitable as contrast agents in medical imaging techniques such as magnetic resonance imaging (MRI) and fluorescence microscopy.

Targeted Drug Delivery: Due to their biocompatibility and luminescent properties, Europium oxide nanoparticles are explored as carriers for targeted drug delivery. These nanoparticles can be functionalized with biomolecules that target specific tissues or cells, enabling precise and localized drug release, which is particularly useful in cancer therapies.

Catalysis and Chemical Reactions

Catalytic Reactions: Europium oxide nanoparticles exhibit high surface reactivity, making them effective in catalysis for various chemical reactions. They are used in applications like hydrocracking, oxidation reactions, and petrochemical synthesis to accelerate reaction rates and improve process efficiency.

Environmental Remediation: Europium oxide nanoparticles are used in environmental applications, such as removing pollutants from water and air. Their high surface area and catalytic activity allow them to degrade toxic organic compounds, remove heavy metals, and assist in wastewater treatment.

CO₂ Capture: Europium oxide nanopowder has also been studied for use in carbon dioxide (CO₂) capture and conversion. This process helps in reducing carbon emissions by converting CO₂ into useful chemicals, playing a role in mitigating climate change.

 

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