Tellurium tetrachloride

Tellurium tetrachloride
Tellurium tetrachloride
Names
IUPAC names
Tellurium(IV) chloride
Tetratellurium hexadecachloride
Other names
Tellurium chloride
Identifiers
CAS Number
  • 10026-07-0 ☒N
3D model (JSmol)
  • Interactive image
ChemSpider
  • 55367 checkY
ECHA InfoCard 100.030.038 Edit this at Wikidata
PubChem CID
  • 61443
UNII
  • DNY2R5498H ☒N
CompTox Dashboard (EPA)
  • DTXSID1064904 Edit this at Wikidata
InChI
  • InChI=1S/Cl4Te/c1-5(2,3)4 checkY
    Key: SWLJJEFSPJCUBD-UHFFFAOYSA-N checkY
  • InChI=1/Cl4Te/c1-5(2,3)4
    Key: SWLJJEFSPJCUBD-UHFFFAOYAL
  • Cl[Te](Cl)(Cl)Cl
Properties
Chemical formula
TeCl4
Molar mass 269.41 g/mol
Appearance hygroscopic pale yellow solid
(if fused, maroon liquid)
Density 3.26 g/cm3, solid
Melting point 224 °C (435 °F; 497 K)
Boiling point 380 °C (716 °F; 653 K)
Structure
Crystal structure
Monoclinic, mS80
Space group
C12/c1, No. 15
Coordination geometry
Distorted octahedral (Te)
Seesaw (gas phase)
2.59 D (gas phase)
Hazards
Occupational safety and health (OHS/OSH):
Main hazards
Toxic, corrosive,
respiratory irritant
Related compounds
Other anions
Tellurium tetrafluoride
Tellurium tetrabromide
Tellurium tetraiodide
Other cations
Selenium tetrachloride
Polonium tetrachloride
Related compounds
Tellurium dichloride
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
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Infobox references
Chemical compound

Tellurium tetrachloride is the inorganic compound with the empirical formula TeCl4. The compound is volatile, subliming at 200 °C at 0.1 mmHg.[1] Molten TeCl4 is ionic, dissociating into TeCl3+ and Te2Cl102−.[1]

Structure

TeCl4 is monomeric in the gas phase, with a structure similar to that of SF4.[2] In the solid state, it is a tetrameric cubane-type cluster, consisting of a Te4Cl4 core and three terminal chloride ligands for each Te. Alternatively, this tetrameric structure can be considered as a Te4 tetrahedron with face-capping chlorines and three terminal chlorines per tellurium atom, giving each tellurium atom a distorted octahedral environment

Synthesis

TeCl4 is prepared by chlorination of tellurium powder:

Te + 2 Cl2 → TeCl4

The reaction is initiated with heat. The product is isolated by distillation.[3]

Reactions

Tellurium tetrachloride is the gateway compound for high valent organotellurium compounds. Arylation gives, depending on conditions, Te(C6H4R)2Cl2, [Te(C6H4R)5], [Te(C6H4R)6].[4]

TeCl4 has few applications in organic synthesis. Its equivalent weight is high, and the toxicity of organotellurium compounds is problematic. Possible applications of tellurium tetrachloride to organic synthesis have been reported.[5] It adds to alkenes to give Cl-C-C-TeCl3 derivatives, wherein the Te can be subsequently removed with sodium sulfide. Electron-rich arenes react to give aryl Te compounds. Thus, anisole gives TeCl2(C6H4OMe)2, which can be reduced to the diaryl telluride.

Safety considerations

As is the case for other tellurium compounds, TeCl4 is toxic. It also releases HCl upon hydrolysis.

References

  1. ^ a b Greenwood, Norman N.; Earnshaw, Alan (1997). Chemistry of the Elements (2nd ed.). Butterworth-Heinemann. ISBN 978-0-08-037941-8.
  2. ^ Cotton, F. Albert; Wilkinson, Geoffrey; Murillo, Carlos A.; Bochmann, Manfred (1999), Advanced Inorganic Chemistry (6th ed.), New York: Wiley-Interscience, ISBN 0-471-19957-5
  3. ^ Suttle, J. F.; Smith, C. R. F. (1950). Audrieth, Ludwig F. (ed.). Inorganic Syntheses. Vol. 3. pp. 140–2. doi:10.1002/9780470132340. ISBN 978-0-470-13162-6.{{cite book}}: CS1 maint: multiple names: authors list (link)
  4. ^ Miyasato, Masataka; Sagami, Takao; Minoura, Mao; Yamamoto, Yohsuke; Akiba, Kin-ya (2004). "Syntheses and Reactions of Hexavalent Organotellurium Compounds Bearing Five or Six Tellurium-Carbon Bonds". Chemistry – A European Journal. 10 (10): 2590–2600. doi:10.1002/chem.200305260. PMID 15146530.
  5. ^ Petragnani, N.; Comasseto, J. V. (1991). "Tellurium Reagents in Organic Synthesis; Recent Advances. Part 1". Synthesis. 1991 (10): 793–817. doi:10.1055/s-1991-26577. S2CID 260335920. and Petragnani, N.; Comasseto, J. V. (1991). "Tellurium Reagents in Organic Synthesis; Recent Advances. Part 2". Synthesis. 1991 (11): 897–919. doi:10.1055/s-1991-26605. S2CID 196716602.
  • v
  • t
  • e
  • Te2Br
  • TeBr4
  • Te3Cl2
  • TeCl2
  • TeCl4
  • TeF4
  • TeF6
  • TeI
  • TeI4
  • TeO
  • TeO2
  • TeO3
  • HOTeF5
  • TeN
  • TeO2−
    4
    +TeO2−
    3
  • v
  • t
  • e
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 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[AuCl4])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