Synthesis and catalytic activity of homoleptic lanthanide-tris(cyclopropylethinyl)amidinates

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Abstract

Reactions of anhydrous lanthanide trichlorides, LnCl3 (Ln = Nd, Sm, Ho), with 3 equiv. of lithium-cyclopropylethinylamidinates, Li[c-C3H5-CC-C(NR)2] (1a: R = cyclohexyl (Cy), 1b: R = iPr), afforded the new homoleptic lanthanide(iii) tris(cyclopropylethinylamidinate) complexes [c-C3H5-CC-C(NCy)2]3Sm (2a) and [c-C3H5-CC-C(NiPr)2]3Ln (Ln = Nd (2b), Sm (2c), Ho (2d)) as air- and moisture-sensitive crystalline solids in moderate to good isolated yields (45-79%). The formation of unsolvated, homoleptic Ln(iii) tris(cyclopropylethinylamidinate) was confirmed by an X-ray diffraction study of the holmium derivative [c-C3H5-CC-C(NiPr)2]3Ho (2d). EI mass spectra of the new rare-earth metal amidinates indicated a significant volatility. An initial catalysis study revealed that these complexes catalyze the addition of terminal alkynes to carbodiimides to give propiolamidines of the type R-CC-C(NR′)(NHR′). The molecular structure of N,N′-dicyclohexyl-phenylpropiolamidine, Ph-CC-C(NCy)(NHCy) (4), was also determined by X-ray diffraction.

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Sroor, F. M., Hrib, C. G., Hilfert, L., Busse, S., & Edelmann, F. T. (2015). Synthesis and catalytic activity of homoleptic lanthanide-tris(cyclopropylethinyl)amidinates. New Journal of Chemistry, 39(10), 7595–7601. https://doi.org/10.1039/c5nj00555h

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