| Product ID | Formula | Purity | Dimension | Quantity | Price in € | Inquiry |
|---|---|---|---|---|---|---|
| 22130600ST001 | Ti3AlC2 | 99% | Ø 25.4mm x 3.175mm | 1 | POR | Inquire |
| 22130600ST002 | Ti3AlC2 | 99% | Ø 50.8mm x 3.175mm | 1 | POR | Inquire |
| 22130600ST003 | Ti3AlC2 | 99% | Ø 50.8mm x 6.35mm | 1 | POR | Inquire |
Titanium Aluminum Carbide Sputtering Target is a 312 MAX phase ceramic material composed of titanium, aluminum, and carbon. It combines ceramic properties such as high-temperature stability and hardness with metallic characteristics including good electrical and thermal conductivity.
Ti3AlC2 sputtering targets are used for PVD and thin-film deposition, MAX phase coating research, advanced ceramic materials, and Ti₃C₂Tₓ MXene precursor research. Custom target sizes, purity levels, and bonding configurations are available according to customer requirements. Contact us for more information.
The following is a typical characterization result for Titanium Aluminum Carbide (Ti₃AlC₂):
| Element | Content (wt%) |
| Ti | 73.79 |
| Al | 13.86 |
| C | 12.35 |
*Actual composition may vary depending on production conditions and customer specifications. A Certificate of Analysis (CoA) can be provided upon request.
| Item | Specification |
| Product | Titanium Aluminum Carbide Sputtering Target |
| Chemical Formula | Ti₃AlC₂ |
| Material Type | 312 MAX Phase Ceramic |
| Purity | 99% |
| Shape | Circular, rectangular, or customized |
| Dimensions | Customized |
| Thickness | Customized |
| Bonding | Bonded or unbonded |
| Application | Sputtering, PVD, thin-film deposition, materials research |
*Custom purity, dimensions, thickness, bonding, and packaging are available upon request.
Sputtering and Thin-Film Deposition
Ti3AlC2 sputtering targets can be used as source materials for PVD and sputtering processes to develop Ti-Al-C based thin films and coatings.
MAX Phase Coatings
Ti3AlC2 is a representative MAX phase material used in research on high-temperature, conductive, wear-resistant, and multifunctional coatings.
MXene Precursor Research
Ti3AlC2 is a commonly studied MAX phase precursor for producing Ti₃C₂Tₓ MXene through selective removal of aluminum layers. Ti₃C₂Tₓ and related MXenes are being investigated for applications in batteries, supercapacitors, sensors, catalysis, adsorption, and electromagnetic shielding.
Advanced Ceramic Materials
It can also be used in research involving advanced ceramics, ceramic composites, conductive materials, and high-temperature structural materials.
Our Ti3AlC2 sputtering targets undergo strict quality control covering raw material inspection, chemical composition, phase characterization, dimensional inspection, and final product inspection. Samples and inspection reports can be provided according to customer requirements.
It’s typically vacuum-sealed in a transparent bag and protected with an aluminum foil vacuum bag, carton, paper barrel, or iron barrel depending on target size and shipping requirements.
Store the target in a dry, cool, and clean environment and keep it sealed when not in use. Avoid prolonged exposure to moisture, heavy pressure, impact, and incompatible oxidizing materials.
Ti3AlC2 is a 312 MAX phase ceramic material composed of titanium, aluminum, and carbon. It combines ceramic characteristics such as high-temperature stability with metallic properties such as electrical and thermal conductivity.
Ti3AlC2 sputtering targets are mainly used for PVD and thin-film deposition, MAX phase coating research, Ti-Al-C materials, and advanced ceramic research. They can also be used in research related to MXene precursors.
Yes. We can provide customized purity, dimensions, thickness, shape, bonding configuration, and packaging according to your sputtering system and application requirements.
VI HALBLEITERMATERIAL GmbH (VIMATERIAL) employs a stringent quality assurance system to ensure the reliability of our product quality. Strict quality control is implemented throughout the entire production chain, and for defective products, we strictly enforce the principle of rework and redo. Each batch is released only after passing detailed specification tests.
Every batch of our materials is independently tested, and, if necessary, we send samples to certified companies for testing. We provide these documents and analysis certificates with the shipment to certify that our products meet the required standards.
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