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Reactivity of Cyclopropenylaluminates

Marco F. Starostzik, Jakub Kenar, Han-Ying Liu, Mary F. Mahon, Michael S. Hill

Research output: Contribution to journalArticlepeer-review

Abstract

Reactions of the potassium cyclopropenylaluminates, [{SiN Dipp}Al-η 2-(C 2Ph 2)K] and [{SiN Dipp}Al-η 2-(PhC═CSiMe 3)K] with terminal alkynes provide alkynylvinylaluminate derivatives with the silyl-substituted analog providing a level of kinetic discrimination. While this latter behavior results in the regiochemical protonation at Al–C(Ph) and retention of the more sterically congested Al–C(SiMe 3) bond, reactions with CO 2and phenyl-substituted ketones are complicated by a reduced level of discrimination and a likely tendency toward multiple C═O insertion or loss of coordinated alkyne. This latter process results in reactivity more reminiscent of the Al(I) compounds used to synthesize the cyclopropenylaluminate starting materials. Similar observations are provided by reactions with organic azides and trimethylsilyldiazomethane, which proceed with terminal nitrogen insertion and the generation of azacyclobutenylaluminate structures for [{SiN Dipp}Al-η 2-(C 2Ph 2)K], but with evidence of greater degrees of competitive alkyne elimination from [{SiN Dipp}Al-η 2-(PhC═CSiMe 3)K].

Original languageEnglish
Pages (from-to)1987-1997
Number of pages11
JournalOrganometallics
Volume44
Issue number17
Early online date27 Aug 2025
DOIs
Publication statusPublished - 8 Sept 2025

Funding

We acknowledge financial support from the EPSRC (research grant EP/R020752/1).

FundersFunder number
Engineering and Physical Sciences Research CouncilEP/R020752/1

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