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Hollow mesoporous ceria nanoparticles

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Product Name

Name: Hollow mesoporous ceria nanoparticles


Product Overview

 

 

 

 

 

 

 

 

Hollow Mesoporous Ceria Nanoparticles (CeO2 NPs) are a type of nanomaterial with unique hollow structure and mesoporous properties. It combines the chemical stability of ceria with the high specific surface area, large pore volume, and excellent material transport properties of the hollow mesoporous structure, thus demonstrating broad application prospects in multiple fields.

Technical Parameter

Color::Transparent dispersion

Solvent:Ultra pure water


Product Features

 

Hollow structure: Hollow mesoporous ceria nanoparticles have internal cavities, which can provide larger internal space for encapsulating drugs, catalysts, or other active substances.

Mesoporous properties: Mesoporous structure means that these nanoparticles have ordered pores that can serve as channels for material transport, promoting the diffusion and release of drugs or catalysts.

High specific surface area: Due to the presence of mesoporous and hollow structures, these nanoparticles typically have a very high specific surface area, which helps to increase the contact area with reactants, improve catalytic efficiency or drug loading.

Chemical stability: Cerium dioxide itself is a chemically stable material that can maintain its structural and performance stability under various environmental conditions.

Biocompatibility: Cerium dioxide exhibits good biocompatibility in biomedical applications and can be used as a drug carrier or bioimaging agent.


Application Fields

 

Drug delivery: Hollow mesoporous ceria nanoparticles can serve as drug carriers, utilizing their high specific surface area and hollow structure to encapsulate drugs and achieve sustained drug release through mesopores.

Catalysis: The mesoporous structure and high specific surface area make ceria an excellent catalyst carrier, which can be used for catalyzing various chemical reactions such as oxidation, reduction, hydrolysis, etc. Especially in the field of environmental protection, such as catalytic reduction of organic pollutants such as nitrobenzene compounds.

Energy storage and conversion: Cerium dioxide also has potential applications in the energy field, such as being used as an electrode material in lithium-ion batteries or fuel cells.

Biomedical field: Hollow mesoporous ceria nanoparticles are an ideal choice for in vivo ROS (reactive oxygen species) cleaning agents, with the ability to simulate various enzyme activities such as superoxide dismutase (SOD), catalase, peroxidase, etc., widely used in anti-tumor therapy and anti-inflammatory.


Related Information

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