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Calcium Zirconate Nanoparticles

Calcium Zirconate Nanoparticles

Calcium Zirconate Nanoparticles
Product No NRE-5278-1
CAS No. 12013-47-7
Formula CaZrO3
Molecular Weight 179.3002 g/mol
APS < 100 nm (Can be Customized)
Purity 99.9%
Solubility Soluble in Nitric acid
Melting Point 2250-2550°C
Boiling Point NA

Calcium Zirconate Nanoparticles

Calcium Zirconate nanoparticles are advanced ceramic materials known for their excellent thermal stability, high melting point, outstanding chemical resistance, and superior dielectric properties. These characteristics make them valuable for a wide range of industrial, environmental, and research applications.

One of the primary applications of CaZrO3 nanoparticles is in high-temperature refractory materials. Due to their exceptional resistance to heat and corrosion, they are used in refractory linings, crucibles, kiln furniture, and thermal insulation components for metal processing, glass manufacturing, and ceramic industries. Their ability to maintain structural integrity at elevated temperatures enhances the durability and efficiency of high-temperature equipment.

In the electronics industry, CaZrO3 nanoparticles are utilized as dielectric materials in capacitors, resonators, microwave devices, and ceramic substrates. Their stable dielectric constant, low dielectric loss, and thermal reliability contribute to the production of high-performance electronic components used in communication systems and advanced electronic devices.

CaZrO3 nanoparticles also serve as catalyst supports and catalyst materials in various chemical reactions. Their high surface area and excellent thermal stability improve catalyst dispersion and longevity, making them suitable for catalytic converters, hydrogen production, hydrocarbon reforming, and environmental remediation processes.

In the energy sector, these nanoparticles are investigated for use in solid oxide fuel cells (SOFCs), oxygen sensors, and high-temperature electrochemical devices. Their chemical stability and ionic conductivity make them promising materials for improving energy conversion efficiency and long-term operational stability.

Another important application is in advanced ceramic composites. When incorporated into ceramic matrices, Calcium Zirconate nanoparticles enhance mechanical strength, fracture toughness, wear resistance, and thermal shock resistance. These reinforced composites are widely used in aerospace, automotive, and defense industries where materials must withstand extreme operating conditions.

In addition, Calcium Zirconate nanoparticles are explored for bioceramic and biomedical research, particularly in bioactive ceramic coatings and implant materials due to their excellent chemical stability and biocompatibility. Ongoing research also investigates their use in environmental purification technologies, photocatalysis, and functional nanocomposites.

With their unique combination of thermal, electrical, and mechanical properties, Calcium Zirconate nanoparticles continue to gain importance in next-generation ceramics, energy technologies, electronic devices, and high-performance engineering applications.

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