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Modular Assembly of Furotropones and Benzofurotropones, and Study of Their Physicochemical Properties

机译:呋喃酮和苯并呋喃酮的模块组装及其理化性质的研究

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A rapid and straightforward synthesis of a novel series of furo[2,3-d]tropones (or cydohepta[b]furan-6-ones) has been developed starting from readily and commercially available materials. Directed alpha-lithiation of furan-3-carboxaldehydes and subsequent reaction with a variety of aldehydes efficiently provide, in one step, access to 3-formyl-2-furylcarbinols, which are otherwise only accessible with difficulty. The 3-formyl-2-furylcarbinols are further elaborated in two steps to the synthesis of furo[2,3-d]tropones in good yields via sequential bismuth(III)chloride-catalyzed furfurylation and an unusual base promoted cyclization strategy. Thus, diverse polysubstituted furotropones and benzofurotropones can be rapidly assembled. This methodology thereby offers a potential approach for the synthesis of several bioactive natural products containing cydohepta[b]furan core and also for the buildup of complex molecular architectures through higher order cycloaddition reactions of tropones. Further, the new chromophores have been found to possess promising fluorescence properties. Selective fluorogenic sensing behavior of furotropones toward Fe3+ ions has also been elucidated.
机译:从容易和可商购的材料开始,已经开发了快速和直接合成一系列新的呋喃[2,3-d]托洛酮(或cydohepta [b]呋喃-6-酮)的方法。呋喃-3-羧醛的直接α-锂化反应以及随后与多种醛的反应可在一个步骤中有效地提供3-甲酰基-2-呋喃基甲醇的进入途径,否则很难进入。通过两步氯化铋(III)催化的糠基化反应和不寻常的碱促进的环化策略,可进一步分三步进一步精制3-甲酰基-2-呋喃基甲醇,以高收率合成呋喃[2,3-d]托洛酮。因此,可以快速组装各种多取代的呋喃酮和苯并呋喃酮。因此,该方法学提供了一种潜在的方法,用于合成几种含有cydohepta [b]呋喃核的生物活性天然产物,并为通过托普酮的高阶环加成反应构建复杂的分子结构提供了可能。此外,已经发现新发色团具有有前途的荧光性质。呋喃酮对Fe3 +离子的选择性荧光传感行为也已阐明。

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