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Tin Nitride Nanopowder

Tin Nitride Nanopowder
Product No NRE-5230
CAS No. NA
Formula Sn3N2
APS <100nm  (Can be Customized)
Purity 99.9%
Color Gray
Molecular Weight 384.1434 g/mol
Density NA
Melting Point NA
Boiling Point NA

Tin Nitride Nanopowder

Applications

Wear-Resistant Coatings:

Hard Coatings: Sn₃N₄ nanopowder is used as a coating material for cutting tools, machinery components, and wear-resistant surfaces. Its high hardness and wear resistance provide enhanced performance in abrasive environments, extending the lifespan of industrial tools and machinery.

Surface Protection: The nanopowder is also used for protective coatings in applications where abrasion resistance is essential, such as in the automotive and aerospace industries.

Catalysis and Chemical Reactions:

Catalytic Applications: Tin nitride nanopowder is employed in catalysis due to its ability to facilitate chemical reactions, such as hydrogenation and dehydrogenation reactions. It can also help in the reduction of pollutants and waste treatment.

Environmental Catalysis: Due to its high surface area and catalytic behavior, Sn₃N₄ is also used in environmental applications for waste gas treatment, pollutant removal, and green chemical processes.

Semiconductor and Electronics:

Electrode Materials: Sn₃N₄ is used as an electrode material in electrochemical devices, including batteries and supercapacitors, due to its electrical conductivity and thermal stability.

Conductive Materials: The nanopowder can be used in semiconductor applications as a conductive layer or interconnect material for integrated circuits (ICs) and electronic devices.

Field Emission Devices: Tin nitride nanopowder is also being explored for use in field emission devices, where it can enhance electron emission due to its excellent electrical conductivity.

Energy Storage and Conversion:

Batteries: Sn₃N₄ nanopowder is being studied for use in advanced energy storage devices like lithium-ion batteries. Its electrical conductivity and chemical stability make it a potential candidate for electrode materials in high-performance batteries.

 

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