Description of Molybdenum Telluride Evaporation Materials
Stanford Advanced Materials (SAM) has specialised in manufacturing molybdenum telluride evaporation materials that comply with defined industry purity standards. These materials are utilised in the semiconductor industry, in chemical vapour deposition (CVD), in physical vapour deposition (PVD) and in optical applications. Our development, manufacturing and analysis teams collaborated to produce materials that adhere to industry specifications.
Specifications for Molybdenum Telluride Evaporation Materials
Compound Formula |
MoTe2 |
Appearance |
Grey metallic solid |
Melting Point |
2690 °C |
Density |
7.7 g/cm3 |
Applications for Molybdenum Telluride Evaporation Materials
1. Field-Effect Transistors (FETs): MoTe2 is employed as a channel material in FETs. It enables the construction of thin transistors and exhibits charge carrier mobility.
2. Optoelectronic Devices: MoTe2 is used in photodetectors and other optoelectronic components. It converts incident light into electrical signals.
3. Sensors: MoTe2 is integrated into gas sensors and biosensors. Its sensitivity to environmental changes and defined surface properties supports sensor operation.
4. Flexible Electronics: The mechanical flexibility of MoTe2 permits its use in portable electronic devices. These devices require materials that bend and stretch without loss of function.
5. Energy Storage: Researchers investigate MoTe2 for energy storage in batteries and supercapacitors, given that it supports charge transport and storage.
Packaging of Molybdenum Telluride Evaporation Materials
Stanford Advanced Materials employs controlled handling procedures for its molybdenum telluride evaporation materials to prevent damage during storage and transport. This process maintains the products’ original condition.