Mhaske Krishna, Gangai Shon, Taneja Neha, Narayan Rishikesh
School of Chemical & Materials Sciences, Indian Institute of Technology Goa, Farmagudi, Goa, 403401, India.
Department of Chemistry, Indian Institute of Technology Delhi, New Delhi, 110016, India.
Chemistry. 2024 Dec 13;30(70):e202402929. doi: 10.1002/chem.202402929. Epub 2024 Oct 31.
Highly arylated propeller-shaped heteroarenes constitute an intriguing class of molecular scaffolds for material science applications. Among these, tetraarylated furans demonstrate differentiated properties as compared to other similar heterocyclic cores. The synthetic complexity to access tetraarylated furans increases significantly with increasing number of different peripheral aryl groups. There are only a very limited number of methodologies available to access furans with four different (hetero)aryl substituents. Notably, none of these involve direct oxidative coupling on the furan core as the method of choice. Herein, we report the first methodology based on a sequential two-fold oxidative C-C coupling of furans with indoles to access bis(indolyl)furans (BIFs) - a new class of 'extremely congested' tetra-(hetero)arylated furans with up to four different substituents. The reaction is mediated by inexpensive, earth-abundant FeCl⋅6HO and displays high efficiency, wide substrate scope, modularity and aqueous compatibility. Moreover, we also present the first validation of the distinct aggregation-caused quenching (ACQ) property of the tetraarylated furans beyond only phenyls as peripheral groups and disclose new mechanistic underpinnings for the same.
高度芳基化的螺旋桨状杂芳烃构成了一类用于材料科学应用的有趣分子骨架。其中,与其他类似杂环核心相比,四芳基呋喃表现出不同的性质。随着不同外围芳基数量的增加,合成四芳基呋喃的复杂性显著增加。目前只有非常有限的方法可用于制备具有四个不同(杂)芳基取代基的呋喃。值得注意的是,这些方法中没有一种将呋喃核心上的直接氧化偶联作为首选方法。在此,我们报道了第一种基于呋喃与吲哚的连续两步氧化C-C偶联来制备双(吲哚基)呋喃(BIFs)的方法——一类新型的“极度拥挤”的四(杂)芳基化呋喃,具有多达四个不同的取代基。该反应由廉价、储量丰富的FeCl₃·6H₂O介导,具有高效、底物范围广、模块化和水相兼容性等特点。此外,我们还首次验证了除了苯基作为外围基团之外的四芳基呋喃独特的聚集诱导猝灭(ACQ)性质,并揭示了其新的作用机制。