Europium(II) chloride

Europium(II) chloride
Names
Other names
Europium dichloride
Identifiers
CAS Number
  • 13769-20-5 dry checkY
  • 70442-98-7 dihydrate checkY
3D model (JSmol)
  • Interactive image
ChemSpider
  • 75541
ECHA InfoCard 100.033.973 Edit this at Wikidata
EC Number
  • 237-386-7
PubChem CID
  • 83719
CompTox Dashboard (EPA)
  • DTXSID2065620 Edit this at Wikidata
InChI
  • InChI=1S/2ClH.Eu/h2*1H;/q;;+2/p-2
    Key: BMANZYKPCBPZFG-UHFFFAOYSA-L
  • Cl[Eu]Cl
Properties
Chemical formula
Cl2Eu
Molar mass 222.86 g·mol−1
Appearance white solid
Density 4.86 g·cm−3[1]
Melting point 738 °C (1,011 K)[2]
Boiling point 2,190 °C (2,460 K)[2]
Related compounds
Other anions
europium difluoride
europium dibromide
europium diiodide
Other cations
samarium dichloride
thulium dichloride
Related compounds
europium trichloride
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
Infobox references
Chemical compound

Europium(II) chloride is an inorganic compound with a chemical formula EuCl2. When it is irradiated by ultraviolet light, it has bright blue fluorescence.[3]

Preparation

Europium dichloride can be produced by reducing europium trichloride with hydrogen gas at high temperature:[4]

2 EuCl3 + H2 → 2 EuCl2 + 2 HCl

If dry europium trichloride reacts with lithium borohydride in THF, it can also produce europium dichloride:[5]

2 EuCl3 + 2 LiBH4 → 2 EuCl2 + 2 LiCl + H2↑ + B2H6

Properties

Europium dichloride can form yellow ammonia complexes:EuCl2•8NH3, and can dissolve to pale yellowish EuCl2•NH3.[4] Europium dichloride can react with europium hydride at 120-bar H2, producing EuClH that fluoresces green.[6]

References

  1. ^ Roger Blachnik (Hrsg.): Taschenbuch für Chemiker und Physiker. Band III: Elemente, anorganische Verbindungen und Materialien, Minerale. begründet von Jean d’Ans, Ellen Lax. 4., neubearbeitete und revidierte Auflage. Springer, Berlin 1998, ISBN 3-540-60035-3, S. 446–447
  2. ^ a b Polyachenok, O. G.; Novikov, G. I. Saturated vapor pressures of SmCl2, EuCl2, YbCl2. Zhurnal Neorganicheskoi Khimii, 1963. 8 (12): 2631–2634. ISSN 0044-457X.
  3. ^ Howell, J.K.; Pytlewski, L.L. (August 1969). "Synthesis of divalent europium and ytterbium halides in liquid ammonia". Journal of the Less Common Metals. 18 (4): 437–439. doi:10.1016/0022-5088(69)90017-4.
  4. ^ a b Klemm, Wilhelm; Doll, Walter. Measurements on the bivalent and the quadrivalent compounds of the rare earths. VI. The halides of bivalent europium. Zeitschrift für Anorganische und Allgemeine Chemie, 1939. 241: 233–238. ISSN 0044-2313.
  5. ^ Rossmanith, K.; Muckenhuber, E. Reaction of rare earth chlorides with lithium borohydride. II. Monatshefte fuer Chemie, 1961. 92: 600–604. ISSN 0026-9247.
  6. ^ Kunkel, Nathalie; Rudolph, Daniel; Meijerink, Andries; Rommel, Stefan; Weihrich, Richard; Kohlmann, Holger; Schleid, Thomas (2015). "Green Luminescence of Divalent Europium in the Hydride Chloride EuHCl". Zeitschrift für anorganische und allgemeine Chemie. 641 (7): 1220–1224. doi:10.1002/zaac.201400531. ISSN 0044-2313.
  • v
  • t
  • e
Europium(II)
  • EuF2
  • EuCl2
  • EuBr2
  • EuI2
  • EuH2
  • Eu(OH)2
  • EuO
  • EuS
  • EuSe
  • EuTe
  • EuSO4
  • EuTiO3
Europium(III)
  • EuF3
  • EuCl3
  • EuBr3
  • EuI3
  • Eu(OH)3
  • Eu2O3
  • Eu2Se3
  • Eu2Te3
  • EuP
  • Eu(NO3)3
  • EuPO4
  • EuCrO4
  • EuAsO4
  • Eu(IO3)3
  • Eu2(CO3)3
  • Eu(CH3COO)3
  • Eu2(C2O4)3
  • BaEuTiO4
Organoeuropium(III)
  • EuFOD
  • Eu(C5H7O2)3
    • v
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    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[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
    • v
    • t
    • e
    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