Molybdenum Diselenide Evaporation Materials Description
Stanford Advanced Materials (SAM) specialises in the production of highly pure MoSe₂ evaporation materials. These materials are used in the semiconductor industry, chemical vapour deposition (CVD), physical vapour deposition (PVD) and optical applications. Coordination between our development, manufacturing and analysis teams enabled us to produce evaporation materials that meet strict technical criteria.
Molybdenum Diselenide Evaporation Materials Specification
Chemical Formula |
MoSe₂ |
Appearance |
Solid |
Melting Point |
>1200 °C |
Density |
6 g/cm³ |
Application of Molybdenum Diselenide Evaporation Materials
Molybdenum diselenide (MoSe₂) evaporation materials exhibit a range of properties that are applicable across multiple technical fields. This includes electronics, where MoSe₂ is employed due to its high charge carrier mobility and light detection capability in field-effect transistors (FETs) and photodetectors. In energy storage and conversion, MoSe₂ catalyses the hydrogen evolution reaction (HER) in electrolytic cells and shows potential for lithium-ion batteries. Research on MoSe₂ also addresses its photocatalytic properties in photovoltaics, water splitting catalysis and environmental remediation. In coatings and lubricants, MoSe₂ provides corrosion resistance and functions as a dry lubricant. It is additionally used in gas sensors, biomedical devices and light-emitting devices that contribute to environmental monitoring, healthcare and progress in optoelectronics. Overall, molybdenum diselenide evaporation materials are critical for research and development in various technical fields due to their electronic, optical and mechanical properties.
Packaging of Molybdenum Diselenide Evaporation Materials
Our molybdenum diselenide evaporation materials are packaged in a manner that avoids damage during storage and transport, thereby ensuring that the product quality is maintained.