Department of Chemistry, University of Rostock, Albert-Einstein-Str. 3a, 18059 Rostock, Germany.
Beilstein J Org Chem. 2014 Dec 3;10:2858-73. doi: 10.3762/bjoc.10.303. eCollection 2014.
Due to the fact that the major portion of pharmaceuticals and agrochemicals contains heterocyclic units and since the overall number of commercially used heterocyclic compounds is steadily growing, heterocyclic chemistry remains in the focus of the synthetic community. Enormous efforts have been made in the last decades in order to render the production of such compounds more selective and efficient. However, most of the conventional methods for the construction of heterocyclic cores still involve the use of strong acids or bases, the operation at elevated temperatures and/or the use of expensive catalysts and reagents. In this regard, electrosynthesis can provide a milder and more environmentally benign alternative. In fact, numerous examples for the electrochemical construction of heterocycles have been reported in recent years. These cases demonstrate that ring formation can be achieved efficiently under ambient conditions without the use of additional reagents. In order to account for the recent developments in this field, a selection of representative reactions is presented and discussed in this review.
由于大部分的医药和农药都含有杂环单元,而且商业上使用的杂环化合物的总数在稳步增长,因此杂环化学仍然是合成界的焦点。在过去的几十年里,人们为了使这些化合物的生产更具选择性和效率,付出了巨大的努力。然而,大多数用于构建杂环核心的传统方法仍然涉及使用强酸或强碱、在高温下操作以及使用昂贵的催化剂和试剂。在这方面,电合成可以提供一种更温和、更环保的替代方法。事实上,近年来已经有大量关于电化学构建杂环的例子被报道。这些例子表明,在没有额外试剂的情况下,可以在环境条件下有效地实现环的形成。为了介绍该领域的最新发展,本文选择了一些有代表性的反应进行了介绍和讨论。