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一锅法无溶剂多键形成过程合成单-和双-吲哚基喹喔啉。

One-Pot Mechanochemical Synthesis of Mono- and Bis-Indolylquinones via Solvent-Free Multiple Bond-Forming Processes.

机构信息

Unidad de Química Orgánica y Farmacéutica, Departamento de Química en Ciencias Farmacéuticas, Facultad de Farmacia, Universidad Complutense, 28040, Madrid, Spain.

出版信息

ChemSusChem. 2021 Nov 4;14(21):4764-4775. doi: 10.1002/cssc.202101529. Epub 2021 Sep 24.

Abstract

Bis-indolylquinones are fungal natural products endowed with interesting pharmacological properties. Most of the previously described methodologies in solution for the construction of the bis-indolylquinone framework show disadvantages associated with long reaction times and difficult, waste-generating purifications. A one-pot mechanochemical methodology for the synthesis of indolylquinones was developed, starting from indoles and dihaloquinones in the presence of FeCl or p-TsOH as catalysts and Fetizon's reagent as an oxidant. In contrast to solution chemistry, mechanochemical activation allowed the double addition of indole to a quinone substrate in one pot, leading to symmetrical or non-symmetrical bis-indolylquinones via a domino processes comprising up to six steps. In terms of sustainability, the method has several advantages over the solution protocol, including much shorter reaction times, no external heating, one-pot operation, and the absence of chromatography, leading to a drastically better performance in green metrics and demonstrating the application of several principles of green chemistry, in particular principles 2, 3, and 5.

摘要

双吲哚喹酮是具有有趣药理性质的真菌天然产物。大多数以前在溶液中描述的构建双吲哚喹酮骨架的方法都存在反应时间长和纯化困难、产生废物等缺点。本研究开发了一种从吲哚和二卤代醌在 FeCl 或对甲苯磺酸(p-TsOH)作为催化剂和 Fetizon 试剂作为氧化剂存在的条件下一锅法合成吲哚喹酮的机械化学方法。与溶液化学相比,机械化学活化允许吲哚在一锅法中向醌底物进行双重加成,通过包含多达六个步骤的多米诺反应生成对称或非对称的双吲哚喹酮。就可持续性而言,该方法相对于溶液方案具有多个优点,包括反应时间更短、无需外部加热、一锅操作以及无需进行色谱分离,从而在绿色指标方面表现出明显的优势,并证明了绿色化学的几个原则,特别是原则 2、3 和 5 的应用。

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