Kashyap Akshay, Balraj Vasu, Ramalingam Vijayakumar, Pattabiraman Mahesh
University of Nebraska Kearney, NE - 68845, USA.
Department of Biology and chemistry, SUNY Polytechnic Institute, Utica, NY - 13502, USA.
J Photochem Photobiol A Chem. 2022 Mar 1;425. doi: 10.1016/j.jphotochem.2021.113695. Epub 2021 Dec 1.
The supramolecular photocycloaddition (PCA) of 3-(phenyl)acrylic acid has been extensively pursued by chemists to study weak interactions and synthesize substituted cyclobutanes. The stereo- and regioselectivity of the products in a supramolecularly affected reaction are often used as a probe for assessing the nature of weak interactions and/or molecular ambience of the reactants. However, some crucial aspects of this chemistry have often remained underexplored in the past, especially within the context of interpreting strength and directionality of interactions based on reaction outcomes. We present a detailed study of the cavitand-mediated PCA of a new and suitable reactant (3-(naphthyl)acrylic acids) that exhibits labile photo-reversible chemistry, which is suitable for exploring previously un-explored aspects of the supramolecular PCA chemistry. Our studies afford important insights about this chemistry that should be considered while using product selectivity as a proxy for deducing intermolecular interactions.
化学家们广泛研究了3-(苯基)丙烯酸的超分子光环加成反应(PCA),以研究弱相互作用并合成取代的环丁烷。在超分子影响的反应中,产物的立体选择性和区域选择性常被用作评估弱相互作用的性质和/或反应物分子环境的探针。然而,过去这种化学的一些关键方面常常未得到充分探索,特别是在根据反应结果解释相互作用的强度和方向性的背景下。我们对一种新型且合适的反应物(3-(萘基)丙烯酸)的穴状配体介导的PCA进行了详细研究,该反应物表现出不稳定的光可逆化学性质,适用于探索超分子PCA化学中以前未探索的方面。我们的研究为这种化学提供了重要的见解,在将产物选择性用作推断分子间相互作用的替代方法时应予以考虑。