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Tungsten(V) bromide

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Tungsten(V) bromide
Crystal structure of tungsten(V) bromide
Names
Other names tungsten pentabromide, tungsten(V) bromide, pentabromotungsten
Identifiers
CAS Number
3D model (JSmol)
ChemSpider
PubChem CID
CompTox Dashboard (EPA)
InChI
  • InChI=1S/5BrH.W/h5*1H;/q;;;;;+5/p-5Key: UXVOMHPBSSIGNQ-UHFFFAOYSA-I
  • InChI=1S/5BrH.W/h5*1H;/q;;;;;+5/p-5
SMILES
  • Br(Br)(Br)(Br)Br
Properties
Chemical formula WBr5, Br5W
Molar mass 583.4 g/mol
Appearance brown-black crystals
hygroscopic
Melting point 286 °C (547 °F; 559 K)
Boiling point 333 °C (631 °F; 606 K)
Magnetic susceptibility (χ) +250.0·10 cm/mol
Related compounds
Other anions Tungsten(V) chloride
Other cations Molybdenum(V) bromide
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa). ☒verify (what is  ?) Infobox references
Chemical compound

Tungsten(V) bromide is the inorganic compound with the empirical formula WBr5. The compound consists of bioctahedral structure, with two bridging bromide ligands, so its molecular formula is W2Br10.

Preparation and structure

Tungsten(V) bromide is prepared by treating tungsten powder with bromine in the temperature range 650-1000 °C. The product is often contaminated with tungsten hexabromide.

According to X-ray diffraction, the structure for tungsten pentabromide consists of an edge-shared bioctahedron.

Reactions

Tungsten(V) bromide is the precursor to other tungsten compounds by reduction reactions. For example, tungsten(IV) bromide can be prepared by reduction with aluminium or tungsten. The WBr4 can be purified by chemical vapor transport.

3 WBr5 + Al → 3 WBr4 + AlBr3

Excess tungsten pentabromide and aluminum tribromide are then removed by sublimation at 240 °C.

Tungsten(II) bromide can then be obtained heating the tetrabromide. At 450-500 °C, gaseous pentabromide is evolved leaving yellow-green residue of WBr2. An analogous method can also be applied to the synthesis of tungsten(II) chloride.

Reductive substitution reactions

Because it is relatively easy to reduce tungsten pentahalides, they can be used as alternative synthetic routes to tungsten (IV) halide adducts. For example, reaction of WBr5 with pyridine gives WBr4(py)2.

2 WBr5 + 7 C5H5N → 2 WBr4(C5H5N)2 + bipyridine + C5H5NHBr

References

  1. ^ Y.-Q. Zheng, K. Peters and H. G. von Schnering (1998) "Crystal structure of tungsten pentabromide, WBr5" Zeitschrift für Kristallographie - New Crystal Structures 213(3) 471
  2. ^ R.E. McCarley, T.M. Brown "The Preparation and Reactions of Some Tungsten (II) and Tungsten (IV) Halides" Inorg. Chem. 1964, volume 3, 1232-1236. doi:10.1021/ic50019a007
Tungsten compounds
Tungsten(0)
Tungsten(II)
Tungsten(III)
Tungsten(IV)
Tungsten(V)
Tungsten(VI)
Organotungsten(VI) compounds
Polytungstate salts
Salts and covalent derivatives of the bromide ion
HBr He
LiBr BeBr2 BBr3
+BO3
CBr4
+C
NBr3
BrN3
NH4Br
NOBr
+N
Br2O
BrO2
Br2O3
Br2O5
BrF
BrF3
BrF5
Ne
NaBr MgBr2 AlBr
AlBr3
SiBr4 PBr3
PBr5
PBr7
+P
S2Br2
SBr2
BrCl Ar
KBr CaBr2
ScBr3 TiBr2
TiBr3
TiBr4
VBr2
VBr3
CrBr2
CrBr3
CrBr4
MnBr2 FeBr2
FeBr3
CoBr2 NiBr2
NiBr4
CuBr
CuBr2
ZnBr2 GaBr3 GeBr2
GeBr4
AsBr3
+As
+AsO3
SeBr2
SeBr4
Br2 Kr
RbBr SrBr2 YBr3 ZrBr2
ZrBr3
ZrBr4
NbBr5 MoBr2
MoBr3
MoBr4
TcBr3
TcBr4
RuBr3 RhBr3 PdBr2 AgBr CdBr2 InBr
InBr3
SnBr2
SnBr4
SbBr3
+Sb
-Sb
Te2Br
TeBr4
+Te
IBr
IBr3
XeBr2
CsBr BaBr2 * LuBr3 HfBr4 TaBr5 WBr5
WBr6
ReBr3 OsBr3
OsBr4
IrBr3
IrBr
4
PtBr2
PtBr4
AuBr
AuBr3
Hg2Br2
HgBr2
TlBr PbBr2 BiBr3 PoBr2
PoBr4
AtBr Rn
FrBr RaBr2 ** Lr Rf Db Sg Bh Hs Mt Ds Rg Cn Nh Fl Mc Lv Ts Og
 
* LaBr3 CeBr3 PrBr3 NdBr2
NdBr3
PmBr3 SmBr2
SmBr3
EuBr2
EuBr3
GdBr3 TbBr3 DyBr3 HoBr3 ErBr3 TmBr2
TmBr3
YbBr2
YbBr3
** AcBr3 ThBr4 PaBr4
PaBr5
UBr4
UBr5
NpBr3
NpBr4
PuBr3 AmBr2
AmBr3
CmBr3 BkBr3 CfBr3 EsBr2
EsBr3
Fm Md No
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