Development of a Vinylated Cyclic Allene: A Fleeting Strained Diene for the Diels–Alder Reaction
Abstract
Abstract Fleeting molecules possessing strained multiple bonds are important components in organic synthesis due to their ability to undergo various chemical reactions driven by the release of strain energy. Although the use of strained π‐bonds as 2π components, represented by dienophiles in Diels–Alder reactions, has been well studied, “the strained diene (4π component) approach” for molecular construction remains underexplored. Herein, we report the design of a vinyl cyclic allene (1‐vinyl‐1,2‐cyclohexadiene) as a highly reactive strained diene and the development of its Diels–Alder reactions. Experimental and computational studies of vinyl cyclic allenes revealed that this diene system undergoes cycloaddition with dienophiles regio‐ and stereoselectively under mild reaction conditions. These studies also provide insight into the reactivity and selectivity of the system. The strained diene approach enables the convergent construction of polycyclic molecules through bond disconnections distinct from conventional retrosynthetic analysis, thus offering an efficient strategy for the assembly of functional molecules.
Article Details
Authors (5)
Haruki Mizoguchi
Graduate School of Environmental, Life, Natural Science and Technology Okayama University 3‐1‐1 Tsushima‐naka, Kita‐ku Okayama 700‐8530 Japan
Takumi Obata
Graduate School of Environmental, Life, Natural Science and Technology Okayama University 3‐1‐1 Tsushima‐naka, Kita‐ku Okayama 700‐8530 Japan
Taiki Hirai
Graduate School of Environmental, Life, Natural Science and Technology Okayama University 3‐1‐1 Tsushima‐naka, Kita‐ku Okayama 700‐8530 Japan
Manaka Komatsu
Graduate School of Environmental, Life, Natural Science and Technology Okayama University 3‐1‐1 Tsushima‐naka, Kita‐ku Okayama 700‐8530 Japan
Akira Sakakura
Graduate School of Environmental, Life, Natural Science and Technology Okayama University 3‐1‐1 Tsushima‐naka, Kita‐ku Okayama 700‐8530 Japan