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Diastereodifferentiating the [2+2] Photocycloaddition of Ethylene to Arylmenthyl Cyclohexenonecarboxylates: Stacking‐Driven Enhancement of the Product Diastereoselectivity That Is Correlated with the Reactant Ellipticity
Authors:Ken Tsutsumi Dr.  Yuuki Yanagisawa  Akinori Furutani Dr.  Tsumoru Morimoto Dr.  Kiyomi Kakiuchi Prof.  Takehiko Wada Prof.  Tadashi Mori Dr.  Yoshihisa Inoue Prof.
Affiliation:1. Graduate School of Materials Science, Nara Institute of Science and Technology (NAIST), Takayama, Ikoma, Nara 630‐0101 (Japan), Fax: (+81)?743 72 6089;2. Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, 2‐1‐1 Katahira, Aoba‐ku, Sendai 980‐8577 (Japan);3. Department of Applied Chemistry, Osaka University, 2‐1 Yamada‐oka, Suita 565‐0871 (Japan), Fax: (+81)?6 6879 7923
Abstract:Upon diastereodifferentiating the [2+2] photocycloaddition of ethylene to a series of p‐substituted (?)‐8‐phenylmenthyl cyclohexenonecarboxylates, the diastereoselectivity was critically controlled by the nature of the substituent introduced to the chiral auxiliary, and the p‐nitro‐substituted substrate afforded the cycloadducts in 90 % diastereomeric excess (de) and with 97 % isolated yield. Detailed experimental and theoretical conformation analyses revealed that the stacking interaction of the aromatic auxiliary with the cyclohexenone moiety plays the decisive role in determining the substrate conformation and is, therefore, responsible for the dramatic enhancement of the de. Of particular interest, the product de was directly related to the ellipticity of the substrate, enabling us to “predict” the de prior to photoirradiation.
Keywords:chirality  circular dichroism  diastereoselectivity  ethylene  photocycloaddition
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