Institut für Organische und Biomolekulare Chemie, Georg-August-Universität Göttingen, Göttingen, Germany.
Nat Protoc. 2020 May;15(5):1760-1774. doi: 10.1038/s41596-020-0306-8. Epub 2020 Apr 15.
The direct cleavage of otherwise inert C-H bonds has emerged as a sustainable approach for organic synthesis; in contrast to other approaches, these reactions result in the formation of fewer undesired by-products and do not require pre-functionalization steps. In recent years, oxidative C-H/N-H alkyne annulations and C-H oxygenations were realized by 3d metals. Unfortunately, most of these reactions require stoichiometric amounts of often toxic chemical oxidants. This protocol provides a general method for cobaltaelectro-catalyzed C-H activations of benzamides. Here, anodic oxidation obviates the need for a chemical oxidant and uses 10-20% of a more environmentally benign, inexpensive catalyst. We outline a detailed and precise description of the designed electrolytic cell for metallaelectrocatalysis, including readily available electrode materials and electrode holders. The custom-made device is further compared with the commercially available and standardized ElectraSyn 2.0 electrochemistry kit. As example applications of this approach, we describe cobaltaelectro-catalyzed C-H activation protocols for the direct C-H oxygenation of benzamides and resource-economical synthesis of isoquinolones. The cobaltaelectrocatalysis setup and reaction take about 17 h, while an additional 5 h have to be anticipated for workup and chromatographic purification. The methods described herein feature broad functional group tolerance, operational simplicity, low waste-product formation and an overall exceptional level of resource economy.
直接断裂惰性 C-H 键已成为有机合成的可持续方法;与其他方法相比,这些反应形成较少不需要的副产物,并且不需要预官能化步骤。近年来,3d 金属实现了氧化 C-H/N-H 炔烃环化和 C-H 氧化。不幸的是,这些反应中的大多数需要化学氧化剂的化学计量量,而这些氧化剂通常是有毒的。本协议提供了一种钴电催化酰胺 C-H 活化的通用方法。在这里,阳极氧化避免了化学氧化剂的需要,并使用了更环保、更便宜的催化剂的 10-20%。我们概述了用于金属电催化的设计电解槽的详细而精确的描述,包括易于获得的电极材料和电极架。定制设备进一步与市售和标准化的 ElectraSyn 2.0 电化学套件进行了比较。作为该方法的应用实例,我们描述了钴电催化酰胺 C-H 活化的 C-H 直接氧化和资源经济的异喹啉合成的协议。钴电催化装置和反应需要约 17 小时,而需要额外的 5 小时进行后处理和色谱纯化。本文所述的方法具有广泛的官能团耐受性、操作简单、低废物生成和整体资源经济性的卓越水平。