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Niobium(IV) chloride

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Niobium(IV) chloride
Names
IUPAC name Niobium(IV) chloride
Other names Niobium tetrachloride
Niobium chloride
Identifiers
CAS Number
PubChem CID
CompTox Dashboard (EPA)
Properties
Chemical formula NbCl4
Molar mass 234.718 g/mol
Appearance Violet-Black Crystals
Density 3.2 g/cm
Melting point Dec. 800 °C
Boiling point Subl. 275 °C/10 mmHg
Solubility in water Reacts
Related compounds
Other anions Niobium(IV) bromide
Niobium(IV) iodide
Other cations Vanadium(IV) chloride
Tantalum(IV) chloride
Related niobium chlorides Niobium(III) chloride
Niobium(V) chloride
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

Niobium(IV) chloride, also known as niobium tetrachloride, is the chemical compound of formula NbCl4. This compound exists as dark violet crystals, is highly sensitive to air and moisture, and disproportiates into niobium(III) chloride and niobium(V) chloride when heated.

Structure and properties

In the solid state, niobium(IV) chloride exists as chains of edge-sharing octahedra with alternating Nb-Nb distances of lengths 302.9 and 379.4 pm. The shorter distances correspond to Nb-Nb bonds, which result in the compound's diamagnetism. Its structure is very similar to that of tungsten(IV) chloride.

Other coordination complexes with the formula NbCl4L2, such as tetrachlorobis(tetrahydrofuran) niobium, only form monomers resulting in one unpaired electron in the dxy orbital, making the compounds paramagnetic.

Niobium chloride rapidly oxidizes and hydrolyzes in air to form niobium(V) oxide.

Preparation

Niobium(IV) chloride is typically produced by allowing elemental niobium and niobium(V) chloride crystals to react over several days in a temperature gradient, with the metal around 400 °C and the salt around 250 °C.

4 NbCl5 + Nb → 5 NbCl4

Niobium (IV) chloride can also prepared by a similar reduction of niobium pentachloride with powdered aluminium.

3 NbCl5 + Al → 3 NbCl4 + AlCl3

A similar technique is also used in the synthesis of niobium(IV) bromide and tantalum(IV) chloride. Niobium(IV) iodide exists as well and may be synthesized by thermal decomposition of niobium(V) iodide.

At 400 °C NbCl4 disproportiates:

2 NbCl4 → NbCl3 + NbCl5

Reactions

The disproportiation of niobium(IV) chloride can be used to make tetrachlorobis(tetrahydrofuran) niobium, a useful synthon in Nb chemistry due to the lability of the attached tetrahydrofuran ligands. This compound can be synthesized by first reacting NbCl5 with aluminium in acetonitrile followed by addition of tetrahydrofuran to the resultant solid by the following reaction.

3 NbCl5 + Al + 3 CH3CN → 3 NbCl4(NCCH3)3 + AlCl3
3 NbCl4(NCCH3)3 + AlCl3 + 3 C4H8O → 3 NbCl4(thf)2 + 9 MeCN + AlCl3(thf)

References

  1. CRC, Handbook of Chemistry and Physics, 89th Ed., 2008/09, editor D. Lide, Cleveland, OH: CRC Press, p. 4-36.
  2. Macintyre, J.E.; Daniel, F.M.; Chapman and Hall; Stirling, V.M. Dictionary of Inorganic Compounds. 1992, Cleveland, OH: CRC Press, p. 2957
  3. Cotton, F. A..; Lu, J. (1995). "EPR and Crystallographic Studies of Some Reaction Products of VCl4, NbCl4, and TaCl4 with Trialkyl- and Triarylphosphines". Inorg. Chem. 34 (10): 2639. doi:10.1021/ic00114a023.
  4. McCarley, Robert E.; Torp, Bruce A. (1963). "The preparation and properties of niobium(IV) compounds. I. Some niobium(IV) halides and their pyridine adducts". Inorg. Chem. 2 (3): 540. doi:10.1021/ic50007a029.
  5. Hubert-Pfalzgraf, L.G. Niobium & Tantalum: Inorganic & Coordination Chemistry. 2006: John Wiley & Sons, Ltd.
  6. Manzer, L.E. (1977). "Preparation of the paramagnetic alkyls bis(cyclopentadienyl)dimethylniobium and bis(methylcyclopentadienyl)dimethyltantalum and some six- and eight-coordinate phosphine derivatives of niobium(IV)". Inorg. Chem. 16 (3): 525–528. doi:10.1021/ic50169a004.
Niobium compounds
Niobium(II)
Niobium(III)
Niobium(IV)
Niobium(V)
Organoniobium(V)
Salts and covalent derivatives of the chloride ion
HCl He
LiCl BeCl2 B4Cl4
B12Cl12
BCl3
B2Cl4
+BO3
C2Cl2
C2Cl4
C2Cl6
CCl4
+C
+CO3
NCl3
ClN3
+N
+NO3
ClxOy
Cl2O
Cl2O2
ClO
ClO2
Cl2O4
Cl2O6
Cl2O7
ClO4
+O
ClF
ClF3
ClF5
Ne
NaCl MgCl2 AlCl
AlCl3
Si5Cl12
Si2Cl6
SiCl4
P2Cl4
PCl3
PCl5
+P
S2Cl2
SCl2
SCl4
+SO4
Cl2 Ar
KCl CaCl
CaCl2
ScCl3 TiCl2
TiCl3
TiCl4
VCl2
VCl3
VCl4
VCl5
CrCl2
CrCl3
CrCl4
MnCl2
MnCl3
FeCl2
FeCl3
CoCl2
CoCl3
NiCl2 CuCl
CuCl2
ZnCl2 GaCl
GaCl3
GeCl2
GeCl4
AsCl3
AsCl5
+As
Se2Cl2
SeCl2
SeCl4
BrCl Kr
RbCl SrCl2 YCl3 ZrCl2
ZrCl3
ZrCl4
NbCl3
NbCl4
NbCl5
MoCl2
MoCl3
MoCl4
MoCl5
MoCl6
TcCl3
TcCl4
RuCl2
RuCl3
RuCl4
RhCl3 PdCl2 AgCl CdCl2 InCl
InCl2
InCl3
SnCl2
SnCl4
SbCl3
SbCl5
Te3Cl2
TeCl2
TeCl4
ICl
ICl3
XeCl
XeCl2
XeCl4
CsCl BaCl2 * LuCl3 HfCl4 TaCl3
TaCl4
TaCl5
WCl2
WCl3
WCl4
WCl5
WCl6
ReCl3
ReCl4
ReCl5
ReCl6
OsCl2
OsCl3
OsCl4
OsCl5
IrCl2
IrCl3
IrCl4
PtCl2
PtCl4
AuCl
(Au)2
AuCl3
Hg2Cl2
HgCl2
TlCl
TlCl3
PbCl2
PbCl4
BiCl3 PoCl2
PoCl4
AtCl Rn
FrCl RaCl2 ** LrCl3 RfCl4 DbCl5 SgO2Cl2 BhO3Cl Hs Mt Ds Rg Cn Nh Fl Mc Lv Ts Og
 
* LaCl3 CeCl3 PrCl3 NdCl2
NdCl3
PmCl3 SmCl2
SmCl3
EuCl2
EuCl3
GdCl3 TbCl3 DyCl2
DyCl3
HoCl3 ErCl3 TmCl2
TmCl3
YbCl2
YbCl3
** AcCl3 ThCl3
ThCl4
PaCl4
PaCl5
UCl3
UCl4
UCl5
UCl6
NpCl3 PuCl3 AmCl2
AmCl3
CmCl3 BkCl3 CfCl3
CfCl2
EsCl2
EsCl3
FmCl2 MdCl2 NoCl2
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