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Ti3AlC2 MAX Material
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Ti3AlC2 MAX Material

Price: $ 6  -  157
  • BK2020061705

  • BK2020061705

  • BK2020061705

  • BK2020061705

  • 196506-01-1

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Product Description

Detailed introduction



Name: Ti3AlC2 MAX phase ceramic material

Purity: ≥99%

Condition: gray-black powder

Specification: 400 mesh

Particle size: 1-40um

Density: 4.2g /cm3

Decomposition temperature: 1425℃

Atomic mass: 194.6

Applications: MAX special ceramics, MXene precursor, high temperature coating materials, conductive self-lubricating materials, electronic materials, high temperature structural materials, chemical anti-corrosion materials, high temperature heating materials

Storage conditions: Dry and sealed at room temperature, away from light, 6~12 months.



Product introduction:

MAX phase ceramics (including titanium silicon carbide, Ti3AlC2 material, etc.) is a new type of attention can be processed conductive ceramic materials. This type of ceramics contains more than sixty terene carbides or nitrides. M represents the front metal element of the transition group; A represents the main group elements, mainly the elements of the third and fourth main groups; And X for the elements carbon or nitrogen. Ti3SiC2 is the most widely studied of these. Ti3SiC2 was successfully synthesized by hot pressing method in 1996 by Professor Barsoum M's research group of Drexel University in the United States, and its excellent performance was found. Due to the unique nano-layered crystal structure, this kind of ceramic material has the properties of anti-oxidation, self-lubrication, high fracture toughness at room temperature and conductive. This kind of material can be widely used as high temperature structural materials, electrode brush materials, chemical anti-corrosion materials and high temperature heating bodies. The products are mainly used in high temperature coatings, MXene precursors, conductive self-lubricating ceramics, lithium-ion batteries, supercapacitors, electrochemical catalysis.


Application Fields:

MAX has been widely used in nano-adsorption, biosensor, ion screening, catalysis, lithium-ion batteries, supercapacitors, lubrication and many other fields.


Notice:

1. Large quantity discount

If you have any questions, please contact us







MAX material/ 10g recommended 400 mesh

Recommended 400 mesh

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