Solid mesoporous silica nanoparticles provide optimized porosity, superior surface functionality, and enhanced dispersibility. Designed for drug delivery, catalysis, and environmental applications, they ensure efficient molecular interaction, extended durability, and high adaptability.
Product Overview
Solid mesoporous silica nanoparticles are a type of nanomaterial with a mesoporous structure, featuring a solid core and regular pore channels on the outer surface. This unique structure provides the material with a high surface area, large pore volume, as well as excellent biocompatibility and reactivity. As a functionalized nanomaterial, it holds vast potential in biomedicine, materials science, and chemical engineering, offering broad application prospects in these fields.
Key Features
- Rich Active Sites:Due to their large surface area and abundant surface active sites, solid mesoporous silica nanoparticles serve as ideal catalyst supports, enhancing catalytic activity and selectivity.
- Large Surface Area:The mesoporous structure endows the material with a large surface area, aiding in the adsorption and loading of drugs or other molecules.
- Hydrophilicity and Biocompatibility:The material demonstrates good hydrophilicity and biocompatibility, making it highly effective for in vivo applications.
Applications
- Biomedicine:Used as drug carriers for targeted delivery and controlled release of pharmaceuticals.
- Catalyst Supports:The large surface area and ordered pore structure facilitate the dispersion of catalysts and the mass transfer of reactants, making them suitable for catalytic reactions.
- Adsorption and Separation:Following amination, the nanoparticles carry positive charges on their surface, enhancing their ability to adsorb negatively charged substances, such as certain pollutants and biomolecules.
State | White powder | White powder |
Particle Size | 100-120 nm | 80-100 nm |
Surface Area | ~570 m²/g | ~800 m²/g |
Average Pore Size | 3-4 nm | 4-5 nm |
Pore Volume | 0.35 cm³/g | 0.55 cm³/g |