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CID 15500381

Base Information
  • Chemical Name:CID 15500381
  • CAS No.:12057-75-9
  • Molecular Formula:Mg3Sb2
  • Molecular Weight:316.43
  • Hs Code.:
  • Mol file:12057-75-9.mol
CID 15500381

Synonyms:

Suppliers and Price of CID 15500381
Supply Marketing:
Business phase:
The product has achieved commercial mass production*data from LookChem market partment
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Chemical Property of CID 15500381
Chemical Property:
  • Melting Point:1245°C 
  • Boiling Point:°Cat760mmHg 
  • Flash Point:°C 
  • PSA:0.00000 
  • Density:g/cm3 
  • LogP:0.00000 
  • Hydrogen Bond Donor Count:0
  • Hydrogen Bond Acceptor Count:0
  • Rotatable Bond Count:0
  • Exact Mass:144.88885
  • Heavy Atom Count:2
  • Complexity:2
Purity/Quality:

98%,99%, *data from raw suppliers

Safty Information:
  • Pictogram(s):  
  • Hazard Codes: 
MSDS Files:

SDS file from LookChem

Useful:
  • Canonical SMILES:[Mg]=[Sb]
  • Description Its molecular weight is 316.4351 g/mol. Mg3Sb2 melts at 1245°C. Structural stabilities elastic properties and electronic structures have been determined from first-principles calculation by using Castep and Dmol computer programs based on the density functional theory given for the Mg3Sb2 phase. The calculation results of heat of formation and cohesive energy indicate that Mg3Sb2 has a strong alloying ability as well as the highest structural stability of those compounds studied. Magnesium antimonide has been prepared by the reaction of Mg and Sb metals. Mg melts at 652°C and is stable in an inert atmosphere until its boiling point of 1091°C is reached. Since Sb melts at 630.6°C and is stable in an inert atmosphere until its boiling point of 1587°C, the reaction is best carried out by evaporating Mg metal at about 680°C onto molten Sb metal.
  • Physical properties Its molecular weight is 316.4351 g/mol and its CAS number is 12057-75-9. Mg3Sb2 melts at 1245°C. Structural stabilities elastic properties and electronic structures have been determined from first-principles calculation by using Castep and Dmol computer programs based on the density functional theory given for the Mg3Sb2 phase.
  • Uses Magnesium antimonide has also been used in an electrochemical and device apparatus for high-amperage electrical energy storage. It features a hightemperature, all-liquid chemistry. The batteries are simply tanks filled with three separate layers of liquid that float on top of one another at 700°C: the top layer is molten magnesium, the bottom is antimony, and the middle layer is a salt containing magnesium antimonide, a dissolved compound of the two metals.
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