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Germanium(II) iodide

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Germanium(II) iodide
Identifiers
CAS Number
3D model (JSmol)
ChemSpider
ECHA InfoCard 100.033.620 Edit this at Wikidata
EC Number
  • 236-998-1
PubChem CID
CompTox Dashboard (EPA)
SMILES
  • II
Properties
Chemical formula GeI2
Molar mass 326.439 g·mol
Appearance yellow solid
Density 5.37 g·cm (25 °C)
Melting point 428 °C
Boiling point 550 °C (decomposes)
Structure
Space group P3m1 (No. 164)
Related compounds
Other anions germanium(II) fluoride
germanium(II) chloride
germanium(II) bromide
Other cations tin(II) iodide
lead(II) iodide
Related compounds germanium(IV) iodide
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa). Infobox references
Chemical compound

Germanium(II) iodide is an iodide of germanium, with the chemical formula of GeI2.

Preparation

Germanium(II) iodide can be produced by reacting germanium(IV) iodide with hydriodic acid and hypophosphorous acid and water:

GeI4 + H2O + H3PO2 → GeI2 + H3PO3 + 2 HI

It can also be formed by the reaction of germanium monosulfide or germanium monoxide and hydrogen iodide.

GeO + 2 HI → GeI2 + H2O
GeS + 2 HI → GeI2 + H2S}

It can also be produced from the direct reaction of germanium and iodine at 200 – 400 °C:

Ge + I2 → GeI2

Germanium(II) iodide can also be formed from the decomposition of HGeI3, which can be prepared by reacting HGeCl3 with hydroiodic acid:

HGeCl3 + 3 HI → HGeI3 + HCl
HGeI3 → GeI2 + HI

Properties

Germanium(II) iodide is a yellow crystal that slowly hydrolyzes into germanium(II) hydroxide in the presence of moisture. It is insoluble in hydrocarbons and slightly soluble in chloroform and carbon tetrachloride. It has a cadmium iodide structure with lattice parameters a = 413 pm and c = 679 pm. It disproportionates to germanium and germanium tetraiodide at 550 °C.

Applications

Germanium(II) iodide can react with carbene to form stable compounds. It is also used in the electronics industry to produce germanium layers epitaxially through disproportionation reactions.

References

  1. ^ Georg Brauer (Hrsg.), unter Mitarbeit von Marianne Baudler u. a.: Handbuch der Präparativen Anorganischen Chemie. 3., umgearbeitete Auflage. Band I, Ferdinand Enke, Stuttgart 1975, ISBN 3-432-02328-6, S. 727.
  2. ^ Sigma-Aldrich Co., product no. {{{id}}}.
  3. ^ William M. Haynes (2012), CRC Handbook of Chemistry and Physics, 93rd Edition, CRC Press, pp. 4–65, ISBN 978-143988049-4
  4. Jean d’Ans, Ellen Lax, Roger Blachnik (1998), Taschenbuch für Chemiker und Physiker, Springer DE, p. 472, ISBN 364258842-5{{citation}}: CS1 maint: multiple names: authors list (link)
  5. Wolfgang Kirmse (2013), Carbene Chemistry 2e, Elsevier, p. 540, ISBN 978-032316145-9
  6. Holleman, Arnold Frederik; Wiberg, Egon (2001), Wiberg, Nils (ed.), Inorganic Chemistry, translated by Eagleson, Mary; Brewer, William, San Diego/Berlin: Academic Press/De Gruyter, p. 959, ISBN 0-12-352651-5
  7. A.G. Milnes (1972), Heterojunctions and Metal Semiconductor Junctions, Elsevier, p. 104, ISBN 032314136-6
Germanium compounds
Ge(II)
Ge(IV)
Salts and covalent derivatives of the iodide ion
HI
+H
He
LiI BeI2 BI3
+BO3
CI4
+C
NI3
NH4I
+N
I2O4
I2O5
I2O6
I4O9
IF
IF3
IF5
IF7
Ne
NaI MgI2 AlI
AlI3
SiI4 PI3
P2I4
+P
PI5
S2I2 ICl
ICl3
Ar
KI CaI2 ScI3 TiI2
TiI3
TiI4
VI2
VI3
CrI2
CrI3
CrI4
MnI2 FeI2
FeI3
CoI2 NiI2
-Ni
CuI ZnI2 GaI
GaI3
GeI2
GeI4
+Ge
AsI3
As2I4
+As
Se IBr
IBr3
Kr
RbI
RbI3
SrI2 YI3 ZrI2
ZrI3
ZrI4
NbI4
NbI5
MoI2
MoI3
TcI3 RuI3 RhI3 PdI2 AgI CdI2 InI
InI3
SnI2
SnI4
SbI3
+Sb
TeI4
+Te
I
I
3
Xe
CsI
CsI3
BaI2   LuI3 HfI3
HfI4
TaI4
TaI5
WI2
WI3
WI4
ReI3
ReI
4
OsI
OsI2
OsI3
IrI3
IrI
4
PtI2
PtI4
AuI
AuI3
Hg2I2
HgI2
TlI
TlI3
PbI2 BiI3 PoI2
PoI4
AtI Rn
Fr RaI2   Lr Rf Db Sg Bh Hs Mt Ds Rg Cn Nh Fl Mc Lv Ts Og
LaI2
LaI3
CeI2
CeI3
PrI2
PrI3
NdI2
NdI3
PmI3 SmI2
SmI3
EuI2
EuI3
GdI2
GdI3
TbI3 DyI2
DyI
3
HoI3 ErI3 TmI2
TmI3
YbI2
YbI3
AcI3 ThI2
ThI3
ThI4
PaI4
PaI5
UI3
UI4
NpI3 PuI3 AmI2
AmI3
CmI3 BkI
3
CfI
2

CfI
3
EsI2
EsI3
Fm Md No
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