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Ditelluroxomolybdenum(CAS: 12058-20-7)

Ditelluroxomolybdenum
CAS Number

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Basic Information

Molecular Formula
MoTe2
Molecular Weight
351.14 g/mol

Chemical Identifiers

SMILES
[Mo](=[Te])=[Te]
InChIKey
HITXEXPSQXNMAN-UHFFFAOYSA-N

Database References

MDL Number
MFCD00014217

FAQ

Ditelluroxomolybdenum (CAS: 12058-20-7) is a compound with a crystalline form. Its molecular weight is approximately 415.35 g/mol. This compound has low solubility in water and organic solvents. It is moderately reactive, particularly with strong acids and bases. It can form coordination complexes and exhibits characteristic molybdenum and tellurium chemical properties.
Ditelluroxomolybdenum (CAS: 12058-20-7) is typically synthesized by the direct reaction of molybdenum and tellurium in the presence of an appropriate catalyst, such as a transition metal complex. The reaction is carried out under an inert atmosphere to prevent oxidation. The yield and selectivity of the synthesis can be optimized by adjusting the reaction conditions and catalyst choice.
Ditelluroxomolybdenum (CAS: 12058-20-7) is used in various industries due to its unique chemical properties. It is employed in pharmaceuticals for the synthesis of certain compounds, in polymers for its catalytic properties, in sensors for its sensitivity to certain chemical species, and in semiconductors for its potential in electronic applications.
When handling Ditelluroxomolybdenum (CAS: 12058-20-7), laboratory workers should use personal protective equipment (PPE) including gloves, goggles, and a lab coat. Work should be carried out in a fume hood to minimize inhalation risks. Spills should be cleaned up using appropriate absorbent materials and disposed of according to local regulations. Safety data sheets (SDS) should be consulted for detailed handling information and emergency procedures.

Safety Notice

Please verify product specifications and safety data before use. Contact the supplier for detailed safety information.

Always follow proper handling procedures

Contact Information

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