Ugi I, Heck S
Institut für Organische Chemie und Biochemie, Technische Universität München, Lichtenbergstrasse 4, D-85747 Garching, Germany.
Comb Chem High Throughput Screen. 2001 Feb;4(1):1-34. doi: 10.2174/1386207013331291.
It was recently recognized that three different types of multi-component reactions (MCRs) exist. In preparative chemistry, the MCRs of type II form their products particularly efficiently. These reactions correspond to equilibria of educts and intermediate products, whose final products are formed practically irreversibly. In recent years, the four component reaction of the isocyanides (U-4CR) of type II and their unions with various reactions and MCRs have become an important industrial process for preparing products and their libraries. It has been demonstrated that all conceivable collections of U-4CR educts can be converted into the corresponding products. In the usual chemical reactions, only the substituents of the products can be varied, whereas the U-4CR and related reactions can also produce skeletally different types of products with diverse substituents. The preparative advantages of forming products by the one-pot MCRs and the great variety of the possible products are illustrated in this review.
最近人们认识到存在三种不同类型的多组分反应(MCRs)。在制备化学中,II型MCRs能特别高效地形成其产物。这些反应对应于反应物和中间产物的平衡,其最终产物实际上是不可逆形成的。近年来,II型异腈的四组分反应(U - 4CR)及其与各种反应和MCRs的结合已成为制备产物及其库的重要工业过程。已经证明,U - 4CR反应物的所有可想象的组合都可以转化为相应的产物。在通常的化学反应中,只有产物的取代基可以变化,而U - 4CR及相关反应还可以产生具有不同取代基的骨架不同类型的产物。本文综述阐述了通过一锅法MCRs形成产物的制备优势以及可能产物的多样性。