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Nano titanium diboride

Nano titanium diboride appears as a gray-black powder and has a hexagonal crystal structure similar to aluminum boride (AlB₂). Its melting point ranges from 2900 to 3225°C, and it can be oxidized in air at temperatures up to 1000°C. It is stable in hydrochloric acid (HCl) and hydrofluoric acid (HF).
  • Commodity name: Nano titanium diboride

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  • Product Description
  • Product Features:

    Nano titanium diboride (chemical formula: TiB₂) appears as a gray-black powder and has a hexagonal crystal structure similar to aluminum boride (AlB₂). Its melting point ranges from 2900 to 3225℃, and it can be oxidized in air at temperatures up to 1000℃, remaining stable in HCl and HF acids. Titanium diboride is insoluble in water, with a density of 4.52 g/cm³. Nano titanium diboride is mainly used for the preparation of composite ceramic products, and due to its resistance to molten metal corrosion, it is also used in the manufacture of crucibles for molten metals and electrodes for electrolytic cells. Additionally, titanium boride whiskers are used to enhance titanium-based composites.

    Product Parameters:

    Popular Models

    JH-401

    JH-101

    JH-501

    Appearance

    Gray-black powder

    Gray-black powder

    Gray-black powder

    Purity

    >=99%

    >=99.5%

    >=99%

    Particle Size

    100-300nm (grain size)

    ≤1μm

    ≤500nm (grain size)

    More model parameters vary (customization supported), please contact customer service for detailed parameters.

    Application Industries:

    1. Nano titanium diboride is one of the main raw materials for vacuum coating conductive evaporation boats, used to manufacture conductive ceramic materials.

    2. Nano titanium diboride can be used to manufacture precision machining tools, drawing dies, extrusion dies, sandblasting nozzles, sealing components, etc.

    3. Nano titanium diboride can be combined with materials such as TiC, TiN, and SiC to form composites for making functional components, such as high-temperature crucibles and engine parts. Additionally, it is one of the ideal materials for making armor protection materials.

    4. Due to the good wettability of nano titanium diboride with molten aluminum, it is used as a cathode coating material for aluminum electrolytic cells, which can reduce the power consumption of electrolytic aluminum and extend the life of the electrolytic cell.

    5. Nano titanium diboride can be made into PTC heating ceramic materials and flexible PTC materials, featuring energy-saving, reliability, and ease of processing, making it a new generation product for various electric heating materials.

    6. The application of nano titanium diboride in lithium-sulfur batteries mainly lies in its role as a carrier material for the positive electrode sulfur. Due to its metallic conductivity and polarity, it can improve the utilization of sulfur and the cycling stability of the battery.

    7. Nano titanium diboride can also be used to manufacture rocket nozzles, electrical contacts, high-temperature electrode materials, etc. It is also used as a neutron-absorbing material in nuclear reactors and aluminum production electrolytic devices.

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