Mo2Ti2AlC3 MAX-Phasen-Pulver

Mo2Ti2AlC3 MAX-Phasen-Pulver
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Mo2Ti2AlC3 MAX Phase Powder Data Sheet
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Reinheit: |
≥99.5 % |
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Größe : |
200~500 Maschen oder kundenspezifisch |
Mo2Ti2AlC3 MAX Phase Powder Description
Mo2Ti2AlC3 MAX Phase Powder is an advanced layered carbide material that combines the metallic conductivity of molybdenum and titanium with the ceramic-like durability of aluminum carbide. Its unique hexagonal layered structure provides excellent thermal and electrical conductivity, high mechanical strength, and superior oxidation resistance, making it ideal for demanding industrial environments. The dual titanium composition enhances toughness and chemical stability, allowing the material to maintain performance under extreme temperature, pressure, and corrosive conditions. Mo2Ti2AlC3 MAX Phase Powder is widely used in aerospace protective coatings, high-temperature structural components, energy storage devices, and as a precursor for MXene synthesis, providing versatility for both research and industrial applications.

Mo2Ti2AlC3 MAX Phase Powder Features
- Sechseckige Schichtstruktur: Exhibits a unique layered crystal structure combining metallic conductivity with ceramic durability.
- Hohe thermische und elektrische Leitfähigkeit: Provides efficient heat and electrical transfer for advanced engineering applications.
- Mechanische Festigkeit und Zähigkeit: Offers high fracture toughness and resistance to thermal shock.
- Oxidation and Corrosion Resistance: Molybdenum and titanium improve stability under high-temperature and corrosive environments.
- Potenzial für MXen-Vorläufer: Can be used to produce Mo-Ti-based MXenes for energy storage, catalysis, and electronic devices.
Mo2Ti2AlC3 MAX Phase Powder Applications
- Aerospace Protective Coatings: Applied in wear- and oxidation-resistant coatings for high-temperature aerospace components.
- High-Temperature Structural Parts: Suitable for machinery and components operating under extreme thermal and mechanical stress.
- Energy Storage Devices: Used in lithium-ion batteries, supercapacitors, and other electrochemical systems.
- Katalyse: Investigated for catalytic reactions due to its layered structure and chemical stability.
- MXene Synthesis: Serves as a raw material for Mo-Ti-based MXenes with tunable surface chemistry and high functional potential.
- Schützende Beschichtungen
- Batterie und Energiespeicherung
- Hochtemperatur-Bauteile
- Katalyse
Schützende Beschichtungen
Batterie und Energiespeicherung
Hochtemperatur-Bauteile
Katalyse
Mo2Ti2AlC3 MAX Phase Powder Packaging
Mo2Ti2AlC3 MAX Phase Powder is typically packaged in sealed, moisture-proof plastic bags, then placed in sturdy drum containers or fiber cartons to prevent contamination and ensure safe transport. Standard packaging sizes include 1 kg, 5 kg, and 10 kg options, with custom packaging available upon request to meet specific usage or storage needs.

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