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Strontium Zirconate Nanoparticles

Strontium Zirconate Nanoparticles

Strontium Zirconate Nanoparticles
Product No NRE-5278-2
CAS No. 12036-39-8
Formula SrZrO₃
Molecular Weight 226.84 g/mol
APS < 100 nm (Can be Customized)
Purity 99.9%

Strontium Zirconate Nanoparticles

Strontium Zirconate (SrZrO₃) nanoparticles are advanced ceramic materials known for their excellent thermal stability, chemical resistance, dielectric properties, and high melting point. Their unique perovskite crystal structure makes them highly valuable for applications in electronics, energy systems, catalysis, and high-temperature engineering.

In the electronics industry, SrZrO₃ nanoparticles are widely used as dielectric materials in capacitors, sensors, and microwave devices due to their stable electrical properties and low dielectric losses. They also serve as insulating layers in electronic components where reliable performance at elevated temperatures is required.

In solid oxide fuel cells (SOFCs), these nanoparticles are employed as electrolyte supports and protective ceramic coatings because of their excellent chemical stability and resistance to corrosive operating environments. Their ability to maintain structural integrity under high-temperature conditions contributes to improved fuel cell efficiency and longer operational life.

Strontium Zirconate nanoparticles are also utilized as catalyst supports in chemical processing and environmental applications. Their high surface area enhances catalyst dispersion, resulting in improved reaction efficiency in oxidation, reforming, and emission-control processes. Additionally, they are investigated for photocatalytic applications, including the degradation of organic pollutants in wastewater treatment.

The aerospace and advanced ceramics industries benefit from these nanoparticles in the production of thermal barrier coatings, refractory ceramics, and heat-resistant composites. Their exceptional thermal shock resistance and mechanical durability make them suitable for components exposed to extreme temperatures.

In research laboratories, Strontium Zirconate nanoparticles are extensively studied for next-generation dielectric materials, ferroelectric devices, hydrogen production, and energy storage technologies. Their perovskite structure provides an excellent platform for doping with rare-earth or transition-metal elements to tailor electrical, optical, and catalytic properties.

Furthermore, these nanoparticles are incorporated into ceramic composites to improve hardness, wear resistance, and fracture toughness. Such composites are used in industrial machinery, protective coatings, and high-performance engineering components where long-term reliability is essential.

Overall, Strontium Zirconate nanoparticles offer a versatile combination of thermal, electrical, and chemical properties, making them an important material for advanced electronic devices, clean energy technologies, environmental remediation, and next-generation ceramic engineering.

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