AI Article Synopsis

  • Recent advancements in metallation chemistry focus on replacing the expensive 2,2,6,6-tetramethylpiperidide (TMP) with the cheaper alternative cis-2,6-dimethylpiperidide (cis-DMP) for mixed-metal bases, leading to the development of cis-DMP zincate chemistry.
  • A new compound, lithium diethylzincate, was synthesized and characterized using NMR and X-ray crystallography, demonstrating a dinuclear arrangement, and was found to exhibit superior deprotonative reactivity compared to the previously studied di-tert-butylzincate.
  • The cis-DMP-based system yielded better

Article Abstract

Most recent advances in metallation chemistry have centred on the bulky secondary amide 2,2,6,6-tetramethylpiperidide (TMP) within mixed metal, often ate, compositions. However, the precursor amine TMP(H) is rather expensive so a cheaper substitute would be welcome. Thus this study was aimed towards developing cheaper non-TMP based mixed-metal bases and, as cis-2,6-dimethylpiperidide (cis-DMP) was chosen as the alternative amide, developing cis-DMP zincate chemistry which has received meagre attention compared to that of its methyl-rich counterpart TMP. A new lithium diethylzincate, [(TMEDA)LiZn(cis-DMP)Et2] (TMEDA=N,N,N',N'-tetramethylethylenediamine) has been synthesised by co-complexation of Li(cis-DMP), Et2Zn and TMEDA, and characterised by NMR (including DOSY) spectroscopy and X-ray crystallography, which revealed a dinuclear contact ion pair arrangement. By using N,N-diisopropylbenzamide as a test aromatic substrate, the deprotonative reactivity of [(TMEDA)LiZn(cis-DMP)Et2] has been probed and contrasted with that of the known but previously uninvestigated di-tert-butylzincate, [(TMEDA)LiZn(cis-DMP)tBu2]. The former was found to be the superior base (for example, producing the ortho-deuteriated product in respective yields of 78% and 48% following D2O quenching of zincated benzamide intermediates). An 88% yield of 2-iodo-N,N-diisopropylbenzamide was obtained on reaction of two equivalents of the diethylzincate with the benzamide followed by iodination. Comparisons are also drawn using 1,1,1,3,3,3-hexamethyldisilazide (HMDS), diisopropylamide and TMP as the amide component in the lithium amide, Et2Zn and TMEDA system. Under certain conditions, the cis-DMP base system was found to give improved results in comparison to HMDS and diisopropylamide (DA), and comparable results to a TMP system. Two novel complexes isolated from reactions of the di-tert-butylzincate and crystallographically characterised, namely the pre-metallation complex [{(iPr)2N(Ph)C=O}LiZn(cis-DMP)tBu2] and the post-metallation complex [(TMEDA)Li(cis-DMP){2-[1-C(=O)N(iPr)2]C6H4}Zn(tBu)], shed valuable light on the structures and mechanisms involved in these alkali-metal-mediated zincation reactions. Aspects of these reactions are also modelled by DFT calculations.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4517102PMC
http://dx.doi.org/10.1002/chem.201301180DOI Listing

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The synthesis and characterisation of several sodium zincate complexes are reported. The all-alkyl monomeric sodium zincate, (PMEDTA)·Na(μ-CH2SiMe3)Zn(t)Bu22, is prepared by combining equimolar quantities of (t)Bu2Zn, (n)BuNa and PMDETA (N,N,N',N'',N''-pentamethyldiethylenetriamine)]. A similar approach was used to prepare and isolate the unusual dimeric zincate [(PMEDTA)·Na(μ-(n)Bu)Zn(t)Bu2]23.

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Article Synopsis
  • Recent advancements in metallation chemistry focus on replacing the expensive 2,2,6,6-tetramethylpiperidide (TMP) with the cheaper alternative cis-2,6-dimethylpiperidide (cis-DMP) for mixed-metal bases, leading to the development of cis-DMP zincate chemistry.
  • A new compound, lithium diethylzincate, was synthesized and characterized using NMR and X-ray crystallography, demonstrating a dinuclear arrangement, and was found to exhibit superior deprotonative reactivity compared to the previously studied di-tert-butylzincate.
  • The cis-DMP-based system yielded better
View Article and Find Full Text PDF

Four novel heterobimetallic ate complexes containing cis-2,6-dimethylpiperidide (cis-DMP) have been prepared and characterised. Two contain one cis-DMP ligand, namely the bisalkyl-amido lithium, and sodium zincates [(TMEDA) x MZn(cis-DMP)(tBu)2] (M = Li for 1, Na for 2). Both 1 and 2 are synthesised by co-complexation of the respective alkali metal amide with di-tert-butylzinc in the presence of a molar equivalent of N,N,N',N'-tetramethylethylenediamine (TMEDA) in a hydrocarbon medium.

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