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Molybdenum carbide

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Molybdenum carbide Basic information
Product Name:Molybdenum carbide
Synonyms:MOLYBDENUM CARBIDE;Einecs 235-733-7
CAS:12627-57-5
MF:CH4Mo
MW:111.98246
EINECS:235-733-7
Product Categories:
Mol File:12627-57-5.mol
Molybdenum carbide Structure
Molybdenum carbide Chemical Properties
density 8.4 g/cm3
CAS DataBase Reference12627-57-5
Safety Information
MSDS Information
Molybdenum carbide Usage And Synthesis
DescriptionMolybdenum carbide belongs to the transition metal carbide, which is a family of interstitial compounds with metallic properties formed by carbon entering the crystal lattice of the transition metal.
Chemical PropertiesMolybdenum carbide is a gray hexagonal crystal. It has the characteristics of high melting point and hardness, good thermal and mechanical stability and good corrosion resistance. The melting point is 2692°C. Insoluble in water and lye, slightly soluble in nitric acid, sulfuric acid and hydrofluoric acid.
UsesMolybdenum carbide has a high initial catalytic activity in the benzene hydrogenation reaction. Although the catalyst gradually deactivates as the reaction progresses, its steady-state conversion frequency (TOF) is still comparable to that of noble metals Pt or Ru.
Production MethodsPolymorphism in stoichiometric and non-stoichiometric MO carbides is described. Up to 1190 ℃ the stable phase is orthohrombic α Mo-C, between 1190 ℃  and 1655℃  hexagonal βMo2C is stable. Above 1655 ℃  a non-stoichiometric MO-C phase exists, hexagonal up to 1960 ℃ and face centred cubic between 1960 and the melting point, 2580 ℃ . Heating MO and C in a solar furnace at 1600 ℃ resulted in synthesis of non-stoichiometic hexagonal MoC(1-x)in 30 minutes. It is suggested that there is a photochemical reaction.
References[1] Photochemical synthesis of molybdenum carbide for molybdenum and carbon powders[J]. Metal Powder Report, 2000, 55 11: Page 46. DOI:10.1016/0026-0657(00)92257-4.
Molybdenum carbide Preparation Products And Raw materials
Tag:Molybdenum carbide(12627-57-5) Related Product Information
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