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Gold(I) bromide

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Gold(I) bromide
Crystal structure of AuBr-P
Crystal structure of AuBr-P
Names
IUPAC name gold(I) bromide
Other names Aurous bromide
Gold monobromide
Gold(I) bromide
Identifiers
CAS Number
3D model (JSmol)
ChemSpider
EC Number
  • 260-763-2
PubChem CID
CompTox Dashboard (EPA)
SMILES
  • Br
Properties
Chemical formula AuBr
Molar mass 276.87 g/mol
Appearance lemon yellow crystals (AuBr-I), yellow-brown (AuBr-P)
Density 7.9 g/cm
Melting point 165 °C (329 °F; 438 K) (decomposes)
Magnetic susceptibility (χ) −61.0·10 cm/mol
Hazards
NFPA 704 (fire diamond)
NFPA 704 four-colored diamondHealth 3: Short exposure could cause serious temporary or residual injury. E.g. chlorine gasFlammability (red): no hazard codeInstability (yellow): no hazard codeSpecial hazards (white): no code
3
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa). checkverify (what is  ?) Infobox references
Chemical compound

Gold(I) bromide can be formed by synthesis from the elements or partial decomposition of gold(III) bromide by careful control of temperatures and pressures.

Structure

It occurs in two modifications. One (I-AuBr) is isostructural with gold(I) chloride and has a body centered tetragonal unit cell with a = 6.734 Å, c = 8.674 Å, and space group I41/amd. The other (P-AuBr) is isostructural with gold(I) iodide and has a primitive tetragonal cell a = 4.296 Å, c = 12.146 Å, and space group P42/ncm. Single crystals of both modifications have been grown by chemical vapor transport. Small amounts of aluminium, gallium, or iron were used as catalysts for the transport process to obtain the I-AuBr modification.

The two structures both consist of -Br-Au-Br-Au-Br- polymeric zigzag chains, but they are stacked in a different arrangement. In the primitive tetragonal I-AuBr, the chains form layers (see figure) in contrast to the body centered P-AuBr, where they are more interwoven. Another difference is that the Au-Br-Au angle is only 77° in the former, but 92.3° in the latter.

Density functional calculations on the monohalides of group 11 (Cu, Ag, Au) have tried to shed light on the question why gold halides form rather different, low symmetry structures rather than the cubic zinc blend or rock salt structures of the silver and copper halides. It was shown that this calculation technique accurately predicts which structure type should be stable. The peculiar structures of the gold halides are mostly a result of the relativistic effects that occur for the elements of the later periods of the periodic table.

References

  1. E.M.W. Janssen and G.A. Wiegers (1978). "Crystal growth and the crystal structures of two modifications of gold monobromide, I-AuBr and P-AuBr". Journal of the Less-Common Metals. 57 (2): P47 – P57. doi:10.1016/0022-5088(78)90248-5.
  2. Tilo Söhnel, Holger Hermann and Peter Schwerdtfeger (2005). "Solid state density functional calculations for the group 11 monohalides". J. Phys. Chem. B. 109 (1): 526–531. doi:10.1021/jp046085y. PMID 16851044.

External links

Gold compounds
Gold(-I)
Gold(I)
Organogold(I) compounds
  • (AuC6H2(CH3)3)5
  • (C2H5)3PAuSC5H5O(CO2CH3)3CH2OCOCH3
  • AuSC5H5O(OH)3CH2OH
  • NaAuSCH2CHOHCH2SO3
  • BrAuSC4H8
  • ClAuSC4H8
  • ClAuS(CH3)2
  • ClAuP(C6H5)3
  • Na2AuSCHCO2CH2CO2
  • NaAuSCHCO2CH2CO2H
  • Gold(II)
    Gold(I,III)
    Gold(III)
    Aurates(III)
  • HAuCl4
  • NaAuCl4
  • HAuBr4
  • HAu(NO3)4
  • ClO2Au(ClO4)4
  • NaAuO2
  • Gold(V)
    Gold(VI)
    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
    Categories: