Mesoporous cerium oxide nanoparticles (CeO₂ NPs) offer optimized surface area, superior catalytic performance, and enhanced oxygen storage capacity. Designed for environmental remediation, fuel cells, and biomedical applications, they ensure efficient oxidation-reduction reactions, extended durability, and high adaptability.
Product Overview
Mesoporous cerium oxide nanoparticles (CeO₂ NPs) are a type of nanomaterial with a mesoporous structure, featuring pore sizes between 2 to 6 nm and a large specific surface area. This unique structure makes them an ideal choice for use as multiphase catalysts and catalyst supports, offering more active sites for catalytic reactions. The redox properties and oxygen storage capacity of cerium oxide make it highly applicable in catalytic, energy, and biomedical fields, demonstrating broad potential in various industries.
Key Features
- Mesoporous Structure: The channels facilitate the diffusion and release of substances, enhancing reaction efficiency and increasing the material's specific surface area.
- High Surface Area: The mesoporous structure gives cerium oxide nanoparticles a larger specific surface area, which is beneficial for catalytic reactions and drug loading.
- Chemical Stability: It exhibits good chemical stability, maintaining structure and performance under various environmental conditions.
- Biocompatibility: Demonstrates excellent biocompatibility, making it suitable for drug delivery and biomedical applications.
Applications
- Catalysis: Mesoporous cerium oxide nanoparticles are widely used in catalytic reactions, such as the reduction of nitrobenzene compounds and automotive exhaust purification. Their high surface area and mesoporous structure significantly enhance catalytic efficiency.
- Biomedical Applications: In the biomedical field, these nanoparticles can serve as drug carriers or bioimaging agents, benefiting from their excellent biocompatibility and surface functionalization to enable targeted drug delivery and therapy.
- Energy: They can be used as electrode materials in fuel cells, lithium-ion batteries, and other energy devices, enhancing energy density and cycle stability.
- Environmental Protection: In environmental protection, mesoporous cerium oxide nanoparticles exhibit outstanding catalytic performance in wastewater treatment and air purification, effectively removing harmful substances and improving environmental quality.
Parameter | Description |
Size | 80~105 nm (TEM) |
Appearance | Milky white solution |
Potential | ~5 mV |