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Europium(III) iodide

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Europium(III) iodide
Names
IUPAC name Europium(III) iodide
Other names Europium triiodide
Identifiers
CAS Number
3D model (JSmol)
ChemSpider
ECHA InfoCard 100.033.941 Edit this at Wikidata
EC Number
  • 244-721-0
PubChem CID
CompTox Dashboard (EPA)
InChI
  • InChI=1S/Eu.3HI/h;3*1H/q+3;;;/p-3Key: OEGMUYNEEQNVBV-UHFFFAOYSA-K
SMILES
  • ...
Properties
Chemical formula EuI
3
Molar mass 532.677 g mol
Appearance colourless crystals
Melting point decomposes
Structure
Crystal structure BiI3
Coordination geometry octahedral
Related compounds
Other anions EuF3, EuCl3, EuBr3
Other cations SmI3, GdI3
Related compounds EuI2
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa). Infobox references
Chemical compound

Europium(III) iodide is an inorganic compound containing europium and iodine with the chemical formula EuI3.

Preparation

Europium metal reacts directly with iodine to form europium(III) iodide:

2 Eu + 3 I2 → 2 EuI3

Hydrated europium(III) iodide can be prepared dissolving europium(III) oxide or europium(III) carbonate in hydroiodic acid:

Eu2O3 + 6 HI + 6 H2O → 2 EuI3·9H2O

Europium powder reacts with iodine in THF to form a THF adduct of europium(III) iodide:

2 Eu + 3 I2 + 7 THF → [EuI2(THF)5][EuI4(THF)2]

The adduct can be formulated more simply as EuI3(THF)3.5.

Structure

Europium(III) iodide adopts the bismuth(III) iodide (BiI3) crystal structure type, with octahedral coordination of each Eu ion by 6 iodide ions.

Reactivity

Europium(III) iodide is used as the starting material for two of the main ways of preparing europium(II) iodide:

Reduction with hydrogen gas at 350 °C:

2 EuI3 + H2 → 2 EuI2 + 2 HI

Thermal decomposition at 200 °C, a disproportionation reaction:

2 EuI3 → 2 EuI2 + 2 I2

Europium(III) iodide nonahydrate, EuI3·9H2O, thermally decomposes to europium(II) iodide dihydrate, EuI2·H2O.

References

  1. ^ Greenwood, Norman N.; Earnshaw, Alan (1997). Chemistry of the Elements (2nd ed.). Butterworth-Heinemann. pp. 1240–1241. ISBN 978-0-08-037941-8.
  2. William M. Haynes, ed. (2014). CRC Handbook of Chemistry and Physics (95th ed.). CRC Press. p. 4-63. ISBN 978-1482208689.
  3. ^ Wells, A. F. (1984). Structural Inorganic Chemistry (5th ed.). Oxford University Press. p. 421. ISBN 978-0-19-965763-6.
  4. ^ Asprey, L. B.; Keenan, T. K.; Kruse, F. H. (1964). "Preparation and Crystal Data for Lanthanide and Actinide Triiodides". Inorg. Chem. 3 (8): 1137–1141. doi:10.1021/ic50018a015.
  5. Holleman, A. F.; Wiberg, E. (2001). Inorganic Chemistry. San Diego: Academic Press. ISBN 0-12-352651-5.
  6. Emel'yanov, V. I.; Kuznetsova, L. I.; Abramova, L. V.; Ezhov, A. I. (1997). "Systems Eu2O3-HI-H2O and EuI3-HI-H2O at 25°C". Zh. Neorg. Khim. 42 (8): 1394–1396.
  7. Ortu, Fabrizio (2022). "Rare Earth Starting Materials and Methodologies for Synthetic Chemistry". Chem. Rev. 122: 6040–6116. doi:10.1021/acs.chemrev.1c00842. PMC 9007467.
  8. Gompa, Thaige P.; Rice, Natalie T.; Russo, Dominic R.; Aguirre Quintana, Luis M.; Yik, Brandon J.; Basca, John; La Pierre, Henry S. (2019). "Diethyl ether adducts of trivalent lanthanide iodides". Dalton Trans. 48: 8030–8033. doi:10.1039/C9DT00775J.
  9. Brauer, Georg (1975). Handbook of Preparative Inorganic Chemistry. ISBN 3-432-02328-6.
  10. Jenden, Charles M.; Lyle, Samuel J. (1982). "A Mössbauer spectroscopic study of the lodides of europium". J. Chem. Soc., Dalton Trans. (12): 2409–2414. doi:10.1039/DT9820002409.
Europium compounds
Europium(II)
Europium(III)
Organoeuropium(III)
  • EuFOD
  • Eu(C5H7O2)3
  • 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
    Lanthanide salts of halides
    La Ce Pr Nd Pm Sm Eu Gd Tb Dy Ho Er Tm Yb Lu
    +4 CeF4 PrF4 NdF4 TbF4 DyF4
    +3 LaF3
    LaCl3
    LaBr3
    LaI3
    CeF3
    CeCl3
    CeBr3
    CeI3
    PrF3
    PrCl3
    PrBr3
    PrI3
    NdF3
    NdCl3
    NdBr3
    NdI3
    PmF3
    PmCl3
    PmBr3
    PmI3
    SmF3
    SmCl3
    SmBr3
    SmI3
    EuF3
    EuCl3
    EuBr3
    EuI3
    GdF3
    GdCl3
    GdBr3
    GdI3
    TbF3
    TbCl3
    TbBr3
    TbI3
    DyF3
    DyCl3
    DyBr3
    DyI3
    HoF3
    HoCl3
    HoBr3
    HoI3
    ErF3
    ErCl3
    ErBr3
    ErI3
    TmF3
    TmCl3
    TmBr3
    TmI3
    YbF3
    YbCl3
    YbBr3
    YbI3
    LuF3
    LuCl3
    LuBr3
    LuI3
    +2 LaI2 CeI2 PrI2 NdF2
    NdCl2
    NdBr2
    NdI2
    SmF2
    SmCl2
    SmBr2
    SmI2
    EuF2
    EuCl2
    EuBr2
    EuI2
    GdI2 DyF2
    DyCl2
    DyBr2
    DyI2
    TmF2
    TmCl2
    TmBr2
    TmI2
    YbF2
    YbCl2
    YbBr2
    YbI2
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