Basic information Uses Safety Supplier Related

DODECACARBONYLTETRACOBALT

Basic information Uses Safety Supplier Related

DODECACARBONYLTETRACOBALT Basic information

Product Name:
DODECACARBONYLTETRACOBALT
Synonyms:
  • TETRACOBALT DODECACARBONYL
  • Co4(CO)12
  • Cobalt carbonyl (Co4(CO)12)
  • DODECACARBONYLTETRACOBALT
  • cobaltcarbonyl(co4(co)12)
  • tetrahydro-cobal
  • tri-mu-carbonylnonacarbonyltetracobalt
  • Dodecacarbonyltetracobaltmin
CAS:
17786-31-1
MF:
C12Co4O12
MW:
571.85
EINECS:
241-763-1
Product Categories:
  • metal carbonyl complexes
Mol File:
17786-31-1.mol
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DODECACARBONYLTETRACOBALT Chemical Properties

Melting point:
60°C (dec.)
Density 
2,09 g/cm3
RTECS 
GG3410000
form 
crystal
Specific Gravity
2.09
color 
black
Water Solubility 
slightly soluble H2O [CRC10]
Sensitive 
Air Sensitive
Exposure limits
ACGIH: TWA 0.02 mg/m3
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Safety Information

Risk Statements 
23/24/25
Safety Statements 
23-36/37
RIDADR 
3466
HazardClass 
6.1
PackingGroup 
II

MSDS

  • Language:English Provider:ALFA
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DODECACARBONYLTETRACOBALT Usage And Synthesis

Uses

Catalyst precursor in the interand intramolecular Pauson-Khand reaction.

Chemical Properties

black crystal(s); air sensitive [DOU83] [STR93]

Preparation

Tetracobalt dodecacarbonyl is most conveniently prepared by thermal decomposition of the octacarbonyl at 50° in an inert atmosphere : 2Co2(CO)8 → Co4(CO)12+4CO at present it cannot be prepared direct from cobalt(II) salts and carbon monoxide. Treatment of Co4(CO)12 with alkali metals in tetrahydrofuran gives the green-yellow [Co6(CO)15]2- ion which is slowly transformed into the red-brown [Co6(CO)14]4- anion; these ions are oxidized in aqueous solution by iron(III) chloride to a mixture of carbonyls from which the black Co6(CO)16 can be extracted.

Structure and conformation

It consists of a tetrahedron of cobalt atoms ; three of these have two terminal CO groups and are bridged by CO groups, the other cobalt atom is bonded to three terminal CO groups and the other three cobalt atoms only. The infrared spectrum is considerably simpler than would be expected theoretically for such a structure and consequently a different structure has been proposed for Co4(CO)12 in solution. The carbonyl CO6(CO)16 has a similar infrared spectrum to, and is isomorphous with, Rh6(CO)16 so that it probably has the same structure.

DODECACARBONYLTETRACOBALTSupplier

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