Catalog No. | VD0865 |
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Material | Molybdenum Telluride (MoTe2) |
Purity | 99.9% ~ 99.999% |
Shape | Powder/ Granule/ Custom-made |
Molybdenum ditelluride evaporation material from Stanford Advanced Materials is a telluride ceramic evaporation material with the chemical formula MoTe2. High-purity MoTe2 evaporation materials play a huge role in deposition processes to ensure high-quality deposited film. Stanford Advanced Materials (SAM) specializes in producing up to 99.9995% purity evaporating materials using quality assurance processes to guarantee product reliability.
Related Product: Germanium Evaporation Materials, Telluride Ceramic Evaporation Materials
Material Type | Molybdenum Ditelluride |
Symbol | MoTe2 |
Appearance/Color | Black/lead-gray solid |
Melting Point | Decomposes |
Density | 7.7 g/cm3 |
Purity | 99.9% ~ 99.999% |
Shape | Powder/ Granule/ Custom-made |
Molybdenum ditelluride evaporation materials are used in deposition processes including semiconductor deposition, chemical vapor deposition (CVD), and physical vapor deposition (PVD), and mainly for optics including wear protection, decorative coatings, and displays.
Our molybdenum ditelluride evaporation pellets are carefully packaged in a plastic vacuum bag to prevent damage during storage and transportation and to preserve the quality of our products in their original condition. Also, the COA of the raw material would be packaged with the product.
Stanford Advanced Materials (SAM) specializes in producing high-purity molybdenum ditelluride evaporation materials with high quality for use in semiconductors, chemical vapor deposition (CVD), physical vapor deposition (PVD) displays, and optical applications. The unique synergy between our engineering, manufacturing, and analytical teams has allowed us to produce industry-leading evaporation materials. Get an inquiry right now.
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Just as we had expected! The metal came fast and well packed!
Our experience with Molybdenum Telluride Evaporation Materials has shown it to be the ideal materials for our applications.