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Thorium(IV) bromide

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(Redirected from Thorium tetrabromide)
Thorium(IV) bromide
Identifiers
CAS Number
3D model (JSmol)
ChemSpider
ECHA InfoCard 100.033.285 Edit this at Wikidata
EC Number
  • 236-628-9
PubChem CID
CompTox Dashboard (EPA)
InChI
  • InChI=1S/4BrH.Th/h4*1H;/q;;;;+4/p-4Key: OMDXFCRSKHYDTM-UHFFFAOYSA-J
SMILES
  • Br(Br)(Br)Br
Properties
Chemical formula ThBr4
Molar mass 551.65
Appearance white solid
Density 5.72 g·cm (α)
5.76 g·cm (β)
Melting point 678±5 °C
Solubility in water soluble
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa). Infobox references
Chemical compound

Thorium(IV) bromide is an inorganic compound, with the chemical formula of ThBr4.

Preparation

Thorium(IV) bromide can be obtained by reacting thorium dioxide, bromine and carbon at 800~900 °C. This method produces a mixture of alpha and beta forms of thorium bromide. The pure α-form product is obtained by heating the mixture at 330~375 °C for a long time. The pure β form is obtained by heating the product to 470 °C and then rapidly cooling it in ice water.

ThO2 + 2 C + 2 Br2 ⟶ ThBr4 + 2 CO

Thorium(IV) bromide can also be produced by the reaction of thorium and bromine. Thorium hydroxide reacts with hydrobromic acid to crystallize hydrates from the solution.

Properties

Thorium(IV) bromide exists in low-temperature α-type and high-temperature β-type. They are both white deliquescent solids and are easily soluble in water, ethanol and ethyl acetate. It reacts with fluorine gas under standard conditions and with chlorine or oxygen when heated. The beta form of thorium bromide is metastable at room temperature and converts to the alpha form over 10 to 12 weeks, with the conversion from alpha to beta occurring at around 420 °C. The α-type thorium(IV) bromide is an orthorhombic crystal, while the β-type thorium(IV) bromide is a tetragonal crystal with space group I41/amd. Some of its hydrates are known, and these hydrates form thorium oxybromide on heating.

References

  1. Mason, J.T.; Jha, M.C.; Bailey, D.M.; Chiotti, P. (April 1974). "Crystal structures of ThBr4 polymorphs". Journal of the Less Common Metals. 35 (2): 331–338. doi:10.1016/0022-5088(74)90245-8. Archived from the original on 2018-07-01. Retrieved 2020-11-03.
  2. Georg Brauer, unter Mitarbeit von Marianne Baudler u. a. (Hrsg.): Handbuch der Präparativen Anorganischen Chemie. 3., umgearbeitete Auflage. Band I. Ferdinand Enke, Stuttgart 1975, ISBN 3-432-02328-6, S. 1136.
  3. ^ Morss, L. R.; Edelstein, Norman M.; Fuger, Jean (2010-10-21). The Chemistry of the Actinide and Transactinide Elements (Set Vol.1-6): Volumes 1-6. Springer Science & Business Media. ISBN 978-94-007-0211-0.

External reading

Thorium compounds
Th(II)
Th(III)
Th(IV)
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
Halides of actinides
Ac Th Pa U Np Pu Am Cm Bk Cf Es Fm
+6 UF6
UCl6
NpF6 PuF6 AmF6 EsF6
+5 PaF5
PaCl5
PaBr5
PaI5
UF5
UCl5
UBr5
NpF5 PuF5
+4 ThF4
ThCl4
ThBr4
ThI4
PaF4
PaCl4
PaBr4
PaI4
UF4
UCl4
UBr4
UI4
NpF4
NpCl4
NpBr4
PuF4 AmF4 CmF4 BkF4 CfF4 EsF4
+3 AcF3
AcCl3
AcBr3
AcI3
ThF3
ThCl3
ThI3
UF3
UCl3
UBr3
UI3
NpF3
NpCl3
NpBr3
NpI3
PuF3
PuCl3
PuBr3
PuI3
AmF3
AmCl3
AmBr3
AmI3
CmF3
CmCl3
CmBr3
CmI3
BkF3
BkCl3
BkBr3
BkI3
CfF3
CfCl3
CfBr3
CfI3
EsF3
EsCl3
EsBr3
EsI3
FmCl3
+2 ThI2
ThCl2
AmF2
AmCl2
AmBr2
AmI2
CfI2
CfCl2
EsCl2
EsBr2
EsI2
FmCl2
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