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Lutetium(III) acetate

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Compound of lutetium
Lutetium acetate
Lutetium acetate
Some white lutetium acetate powder.
Names
IUPAC names Tetra-μ-acetatodiaquadilutetium(III)
lutetium(3+);triacetate neodymium(3+) triacetate
Other names
  • Lutetium ethanoate
  • Lutetium triacetate
  • Lutetium(III) acetate
Identifiers
CAS Number
3D model (JSmol)
ECHA InfoCard 100.038.681 Edit this at Wikidata
EC Number
  • 242-566-3
PubChem CID
CompTox Dashboard (EPA)
InChI
  • InChI=1S/C2H4O2.Lu/c1-2(3)4;/h1H3,(H,3,4);Key: WXHWNEZDKCJUFF-UHFFFAOYSA-N
SMILES
  • CC(=O).CC(=O).CC(=O).
Properties
Chemical formula Lu(C2H3O2)3
Hazards
GHS labelling:
Pictograms GHS07: Exclamation mark
Signal word Warning
Hazard statements H315, H318, H335
Precautionary statements P261, P264, P264+P265, P271, P280, P302+P352, P304+P340, P305+P351+P338, P319, P321, P337+P317, P362+P364, P403+P233, P405, P501
Related compounds
Other anions Lutetium(III) oxide
Lutetium(III) hydroxide
Lutetium(III) carbonate
Other cations Ytterbium(III) acetate
Thulium(III) acetate
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa). Infobox references
Chemical compound

Lutetium(III) acetate is the acetate salt of lutetium with the chemical formula of Lu(CH3COO)3.

Preparation

Lutetium(III) acetate can be prepared through neutralisation, where a lutetium salt reacts with acetic acid to produce lutetium acetate and water:

Lu2O3 + 6 CH3COOH → 2 Lu(CH3COO)3 + 3 H2O
Lu(OH)3 + 3 CH3COOH → Lu(CH3COO)3 + 3 H2O

Lutetium(III) acetate also can be obtained by reacting lutetium oxide with gaseous acetic acid or 50% acetic acid solution.

Properties

Lutetium(III) acetate is a water-soluble salt that forms colorless crystals. It forms crystalline hydrates in the form of Lu(CH3COO)3nH2O, where n = 1 or 4.

Lutetium(III) acetate reacts with ammonium fluoride to produce lutetium fluoride:

Lu(CH3COO)3 + 3 NH4F → LuF3 + 3 CH3COONH4

The F formed by the hydrolysis of fluoroborates (such as BF4) can also precipitate with Lu.

Reaction with phosphoric acid to produce lutetium phosphate:

Lu(CH3COO)3 + H3PO4 → LuPO4 + 3 CH3COOH

References

  1. Janina Wysocka-Lisek. Study of topochemical preparation of rare earth acetates(in Polish). Biuletyn Lubelskiego Towarzystwa Naukowego, Matematyka-Fizyka-Chemia, 1981. 23 (2): 145-149.
  2. Grählert, Xina; Starke, Graehlert (1992). "Preparation, thermogravimetric study and infrared spectra of rare earth acetates". Preparation, Thermogravimetric Study and Infrared Spectra of Rare Earth Acetates. 34 (2): 219–229.
  3. Note: The original text is "BMIM = 1-butyl-2-methylimidazolium", which is supposed to be 1-butyl-3-methylimidazolium
  4. Becerro, Ana I.; Gonzalez-Mancebo, Daniel; Ocaña, Manuel (January 2015). "Uniform, luminescent Eu:LuF3 nanoparticles". Journal of Nanoparticle Research. 17 (1): 58. Bibcode:2015JNR....17...58B. doi:10.1007/s11051-015-2874-z. hdl:10261/110370. S2CID 73703723.
  5. Becerro, Ana I.; Ocaña, Manuel (2015). "Quick synthesis, functionalization and properties of uniform, luminescent LuPO 4 -based nanoparticles". RSC Advances. 5 (44): 34517–34524. Bibcode:2015RSCAd...534517B. doi:10.1039/C5RA05305F. hdl:11441/73018.
Lutetium compounds
Acetyl halides and salts of the acetate ion
AcOH He
LiOAc Be(OAc)2
Be4O(OAc)6
B(OAc)3
B2O(OAc)4
AcOAc
ROAc
NH4OAc AcOOH FAc
FOAc
Ne
NaOAc
NaH(OAc)2
Mg(OAc)2 Al(OAc)3
ALSOL
Al(OAc)2OH
Al(OH)2OAc
Al2SO4(OAc)4
Si P S ClAc
ClOAc
Ar
KOAc Ca(OAc)2 Sc(OAc)3 Ti(OAc)4 VO(OAc)3 Cr(OAc)2
Cr(OAc)3
Mn(OAc)2
Mn(OAc)3
Fe(OAc)2
Fe(OAc)3
Co(OAc)2 Ni(OAc)2 CuOAc
Cu(OAc)2
Zn(OAc)2 Ga(OAc)3 Ge As(OAc)3 Se BrAc
BrOAc
Kr
RbOAc Sr(OAc)2 Y(OAc)3 Zr(OAc)4 Nb Mo(OAc)2 Tc Ru2(OAc)4Cl
Ru(OAc)3
Rh2(OAc)4 Pd(OAc)2 AgOAc Cd(OAc)2 In(OAc)3 Sn(OAc)2
Sn(OAc)4
Sb(OAc)3 Te IAc
IOAc
I(OAc)3
Xe
CsOAc Ba(OAc)2 * Lu(OAc)3 Hf Ta W Re Os Ir Pt(OAc)2 Au(OAc)3 Hg2(OAc)2
Hg(OAc)2
TlOAc
Tl(OAc)3
Pb(OAc)2
Pb(OAc)4
Bi(OAc)3 Po At Rn
Fr Ra ** Lr Rf Db Sg Bh Hs Mt Ds Rg Cn Nh Fl Mc Lv Ts Og
 
* La(OAc)3 Ce(OAc)3 Pr(OAc)3 Nd(OAc)3 Pm Sm(OAc)3 Eu(OAc)3 Gd(OAc)3 Tb(OAc)3 Dy(OAc)3 Ho(OAc)3 Er(OAc)3 Tm(OAc)3 Yb(OAc)3
** Ac(OAc)3 Th(OAc)4 Pa UO2(OAc)2 Np Pu Am Cm Bk Cf Es Fm Md No
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