Rapid Access to Conjugated <i>Z</i> , <i>Z</i> , <i>Z</i> ‐Trienes
Abstract
Abstract Intercepting reactions have recently emerged as an innovative approach in organic synthesis, allowing chemists to harness reactive intermediates to access structures and functionalities that conventional methods cannot easily achieve. By deliberately manipulating reaction pathways, this strategy provides a unique avenue to explore unusual reactivities and complex molecular architectures. In this work, we have developed a new protocol for the nucleophile‐intercepted Beckmann fragmentation reaction (NuBFr). Employing tropone oxime tosylate – a simple and readily accessible precursor – and a diverse set of nucleophiles generated in situ from alcohols, phenols, thiols and alkynes with strong bases, we successfully synthesized a library of novel conjugated Z , Z , Z ‐trienecarbonitrile derivatives. This method facilitates rapid access to the conjugated Z , Z , Z ‐triene motif, a structural feature rarely encountered in synthetic chemistry. Our computational studies indicate that the NuBFr reaction likely proceeds through the formation of a bicylic azirine intermediate. The resulting Z , Z , Z ‐trienecarbonitriles could undergo an unprecedented thermally induced 8π/6π/4π electrocyclization cascade sequence to produce trisubstituted olefins. This sequence underscores the fundamental value of these motifs in pushing the boundaries of unusual reactivities in organic synthesis.
Article Details
Authors (4)
Nhan Nu Hong Ton
School of Chemistry University of New South Wales Anzac Parade, Kensington Sydney NSW 2052 Australia
Binh Khanh Mai
Thomas Fallon
School of Physics, Chemistry and Earth Sciences Adelaide University, North Terrace Campus, The University of Adelaide Adelaide 5005 Australia
Thanh Vinh Nguyen