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Molybdenum Titanium Carbide MAX Phase Powder |
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| Product No. | NRE-58032 |
| CAS No. | NA |
| Formula | Mo2TiC |
| Molecular Weight | NA |
| APS | < 40 μm |
| Purity | 99.9% |
| Form | Powder |
Molybdenum Titanium Carbide MAX Phase Powder
Mo2TiC MAX phase powder is an advanced layered ceramic material known for combining the properties of metals and ceramics in a single structure. This material offers excellent electrical conductivity, high-temperature stability, oxidation resistance, thermal conductivity, and mechanical strength. Due to these exceptional properties, Mo2TiC MAX phase powder is widely studied and utilized in various advanced industrial and scientific applications.
One of the major applications of this MAX phase material is in high-temperature structural components. The powder is used to manufacture materials and coatings for furnaces, aerospace systems, thermal protection components, and industrial heating equipment. Its ability to maintain structural integrity under extreme thermal conditions makes it highly valuable in demanding environments.
In the field of wear-resistant and protective coatings, Mo2TiC MAX phase powder is used to improve the durability of cutting tools, molds, turbines, and heavy industrial machinery. The material provides strong resistance against corrosion, abrasion, thermal shock, and oxidation, which helps extend equipment life and reduce maintenance requirements.
The material is also important in electrical and electronic applications because of its excellent electrical conductivity and thermal management properties. It can be used in conductive coatings, heating elements, electronic contacts, and electromagnetic interference (EMI) shielding materials. These characteristics make it suitable for advanced electronics and energy-efficient systems.
Another growing application area is energy storage and energy conversion technologies. Researchers are investigating molybdenum titanium carbide MAX phase powder for use in lithium-ion batteries, sodium-ion batteries, supercapacitors, and fuel cells. Its layered crystal structure supports fast ion transport and efficient charge transfer, improving overall electrochemical performance.
Mo2TiC MAX phase powder is also considered an important precursor material for the production of MXenes, which are two-dimensional nanomaterials derived from MAX phases. MXenes are widely explored for applications such as flexible electronics, sensors, catalysis, water purification, electromagnetic shielding, and hydrogen storage technologies.
In addition, the powder is incorporated into advanced composite materials to enhance mechanical strength, thermal stability, and conductivity. The combination of metallic toughness and ceramic durability makes it highly suitable for next-generation engineering materials.
With its unique multifunctional properties and expanding research interest, molybdenum titanium carbide MAX phase powder continues to play an important role in advanced materials science, energy technology, and modern industrial manufacturing.




