Alonso Diego A, Maciá Beatriz, Pastor Isidro M, Baeza Alejandro
Instituto de Síntesis Orgánica, and Dpto. de Química Orgánica, Universidad de Alicante, Apdo. 99, 03080 Alicante, Spain.
Department of Natural Sciences, Manchester Metropolitan University, Oxford Road, Manchester M1 5GD, United Kingdom.
ACS Org Inorg Au. 2024 Feb 10;4(3):269-286. doi: 10.1021/acsorginorgau.3c00065. eCollection 2024 Jun 5.
During the last years, the development of more sustainable and straightforward methodologies to minimize the generation of waste organic substances has acquired high importance within synthetic organic chemistry. Therefore, it is not surprising that many efforts are devoted to ameliorating already well-known successful methodologies, that is, the case of the asymmetric allylic allylation reaction of carbonyl compounds. The use of free alcohols as alkylating agents in this transformation represents a step forward in this sense since it minimizes waste production and the substrate manipulation. In this review, we aim to gather the most recent methodologies describing this strategy by paying special attention to the reaction mechanisms, as well as their synthetic applications.
在过去几年中,开发更可持续、更直接的方法以尽量减少有机废物的产生,在有机合成化学领域已变得极为重要。因此,许多努力致力于改进那些已广为人知的成功方法,羰基化合物的不对称烯丙基烯丙基化反应便是如此。在这种转化中使用游离醇作为烷基化剂在这方面代表了一种进步,因为它将废物产生和底物操作降至最低。在本综述中,我们旨在收集描述该策略的最新方法,特别关注反应机理及其合成应用。