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Ring extension and rearrangement reactions of an ambiphilic aluminacyclobutene
Pascal Weisenburger1, Israel Fernández2, Frank Breher1
1Institute of Inorganic Chemistry, Karlsruhe Institute of Technology (KIT), Engesserstr. 15, 76131 Karlsruhe, Germany. breher@kit.edu.
Abstract:
The combination of aluminum and carbon as a Lewis acid and base, respectively, to form an intramolecular Frustrated Lewis Pair (FLP) has been less explored compared to other combinations. Herein, we present the synthesis of a metallacyclic aluminum/carbon-based ambiphile and its reactivity towards carbonyl and isocyanate compounds. The aluminacyclobutene title compound Ph3PCH(CHCSiMe3)AltBu2 (3) was synthesized from an alkynyl-substituted phosphonium salt [Ph3PCH2CCSiMe3][Br] (2) and a diorganoalanate Li[tBu2AlH2]·2thf (1). The alanate 1 is structurally characterized and applied in a hydrometallation reaction. The obtained ylide-based ambiphile 3 shows typical FLP reactivity towards carbonyl compounds resulting in ring expansion, forming Ph3PCH(CHCSiMe3){(Ph)C(H)O}AltBu2 (4). In the reaction with phenyl isocyanate, a rearrangement reaction of the ambiphile was observed, which led to proton migration and the formation of an AlOCN heterocycle of the composition Ph3PC(CHCHSiMe3){(Ph)NCO}AltBu2 (6). The proton shuttling initially proceeds from the ylidic carbon atom to the isocyanate's nitrogen atom providing Ph3PC(CHCSiMe3){(PhNH)CO}AltBu2 (5), and finally to the carbon atom originally bonded to the aluminum atom. The experimental findings were rationalized through DFT calculations including an analysis of the rearrangement mechanism.
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