Issue 33, 2022

Alkali metal influences in aluminyl complexes

Abstract

The previously reported potassium aluminyl complex [(BDI-H)AlK+]2 was converted in Li+ or Na+ salts by a salt metathesis reaction with Li(BPh4) or Na(BPh4), respectively; BDI-H = dianionic [(DIPP)N–C(Me)[double bond, length as m-dash]C(H)–C([double bond, length as m-dash]CH2)–N(DIPP)2−] and DIPP = 2,6-diisopropylphenyl. The Rb and Cs aluminyl complexes were obtained by reaction of (BDI)Al with RbC8 or CsC8; BDI = HC[C(Me)N(DIPP)]2. Crystal structures of two monomers, (BDI-H)AlLi+·(Et2O)2 and (BDI-H)AlNa+·(Et2O)(TMEDA), and four dimers [(BDI-H)AlM+]2 (M = Li, Na, Rb, Cs) are discussed. Lewis base-free dimers [(BDI-H)AlM+]2 crystallize either as slipped dimers (Li+, Na+) in which each Al center features only one Al–M contact or as a symmetric dimer (K+, Rb+, Cs+) in which the cation bridges both Al centers. The dimer with the largest cation (Cs+) shows Cs⋯CH2[double bond, length as m-dash]C interactions between dimers, resulting in a coordination polymer. AIM and charge analysis reveal highly ionic Al–M bonds with strong polarization of the Al lone-pair towards the smaller cation Li+ and Na+. The Al–M bonds become weaker from Li to Cs. Calculated dimerization energies suggest that in apolar solvents only complexes with the heavier metals Rb and Cs may be in a monomer–dimer equilibrium. This is confirmed by DOSY measurements in benzene. Dimeric aluminyl complexes with heavier alkali metals (K-Cs) react with benzene to give a double C–H activation in para-positions.

Graphical abstract: Alkali metal influences in aluminyl complexes

Supplementary files

Article information

Article type
Paper
Submitted
01 Jul 2022
Accepted
26 Jul 2022
First published
27 Jul 2022

Dalton Trans., 2022,51, 12476-12483

Alkali metal influences in aluminyl complexes

S. Grams, J. Mai, J. Langer and S. Harder, Dalton Trans., 2022, 51, 12476 DOI: 10.1039/D2DT02111K

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