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Synthesis and characterization of isopropylamine complexes of lanthanide(II) diiodides: Molecular structure of TmI2(PrNH2)4 and EuI2(PrNH2)4
Authors:Mikhail N. Bochkarev  Georgy V. Khoroshenkov  Dmitry M. Kuzyaev  Anatoly A. Fagin  Mikhail E. Burin  Georgy K. Fukin  Eugeny V. Baranov  Alexander A. Maleev
Affiliation:G.A. Razuvaev Institute of Organometallic Chemistry of the Russian Academy of Sciences, Tropinina Street, 49, Nizhny Novgorod 603950, Russian Federation
Abstract:It was found that the lanthanide diiodides LnI2 (1) (Ln = Nd, Sm, Eu, Dy, Tm, Yb) are dissolved in isopropylamine (IPA) without redox transformations. Stability of the formed solutions decreases in a row Eu ≈ Yb > Sm > Tm > Dy > Nd. Removing of a solvent in vacuum leaves complexes LnI2(IPA)x (2) (Nd, x = 5; Sm, Eu, Dy, Tm, Yb, x = 4) as crystalline colored solids. Stability of 2-Nd,Dy,Tm is higher than that of known THF or DME coordinated salts. Divalent state of metal in the products is confirmed by data of UV-Vis spectroscopy, magnetic measurements and their chemical behavior. Structure of 2-Eu and 2-Tm was established by X-ray diffraction analysis. Oxidation of 2-Nd,Dy in IPA affords amine-amides (PriNH)Ln(IPA)y (3) (Nd, y = 4; Dy, x = 3). n-Propylamine also dissolves the iodides 1-Sm,Eu,Dy,Tm,Yb but stability of the solutions is significantly lower. 1-Nd vigorously reacts with PrnNH2 even at −30 °C which hampers the formation of the solution.
Keywords:Primary amines   Complexes   Divalent lanthanides   Diiodides   Isopropylamine
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