| Literature DB >> 33766881 |
Jiajia Ma1, Shuming Chen2, Peter Bellotti1, Renyu Guo3, Felix Schäfer1, Arne Heusler1, Xiaolong Zhang1, Constantin Daniliuc1, M Kevin Brown4, Kendall N Houk5, Frank Glorius6.
Abstract
Dearomative cycloaddition reactions represent an ideal means of converting flat arenes into three-dimensional architectures of increasing interest in medicinal chemistry. Quinolines, isoquinolines, and quinazolines, despite containing latent diene and alkene subunits, are scarcely applied in cycloaddition reactions because of the inherent low reactivity of aromatic systems and selectivity challenges. Here, we disclose an energy transfer-mediated, highly regio- and diastereoselective intermolecular [4 + 2] dearomative cycloaddition reaction of these bicyclic azaarenes with a plethora of electronically diverse alkenes. This approach bypasses the general reactivity and selectivity issues, thereby providing various bridged polycycles that previously have been inaccessible or required elaborate synthetic efforts. Computational studies with density functional theory elucidate the mechanism and origins of the observed regio- and diastereoselectivities.Entities:
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Year: 2021 PMID: 33766881 PMCID: PMC7610643 DOI: 10.1126/science.abg0720
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728