Fe2O3 Iron Oxide Nanoparticles 15wt% Ethanol Dispersion | |
Product No | NRE-23026 |
CAS No. | 1309-37-1 |
Formula | Fe2O3 |
Molecular Weight | 159.69 g/mol |
APS | <10nm (can be customized) |
Purity | 99.9% |
Color | Orange-Red |
Density | 5.24 g/cm³ |
Solvent | Ethanol (As Per Requirement) |
pH | 8.0 – 9.60 |
Fe2O3 Iron Oxide Nanoparticles / Nanopowder 15wt% Ethanol Dispersion
Fe2O3 iron oxide nanoparticles / nanopowder 15wt% ethanol dispersion dispersed in ethanol at a concentration of 15 wt% offer unique properties suitable for a variety of applications. Here are some key applications.
Biomedical Applications
Drug Delivery: The nanoparticles can be utilized as carriers for targeted drug delivery systems. Their biocompatibility and magnetic properties allow for controlled release and magnetic targeting.
Magnetic Resonance Imaging (MRI): Used as contrast agents, enhancing the visibility of tissues during imaging procedures.
Environmental Remediation
Water Treatment: The 15 wt% ethanol dispersion can effectively adsorb heavy metals and organic pollutants from water, making it a viable option for environmental cleanup.
Wastewater Treatment: Employed in processes that remove contaminants through adsorption and subsequent magnetic separation.
Catalysis
Catalytic Reactions: The dispersion can act as a catalyst or catalyst support in various chemical reactions, including oxidation and reduction processes, enhancing reaction rates and efficiency.
Electronics and Sensors
Magnetic Sensors: The magnetic properties of Fe₂O₃ nanoparticles make them suitable for developing sensors that detect magnetic fields or changes in environmental conditions.
Data Storage: Used in magnetic data storage devices due to their stability and high surface area.
Coatings and Pigments
Protective Coatings: The dispersion can be applied in coatings to provide corrosion resistance and durability, useful in industrial applications.
Pigmentation: Used in paints and inks to impart color and enhance UV resistance.
Energy Storage
Batteries and Supercapacitors: Fe₂O₃ nanoparticles can enhance the performance of energy storage devices, improving capacity and charging efficiency.