Chemical Engineering & Process Development Division, CSIR-National Chemical Laboratory, Dr. Homi Bhabha Road, Pune, Maharashtra 411008, India.
Org Biomol Chem. 2018 Dec 12;16(48):9334-9348. doi: 10.1039/c8ob02881h.
The present review provides a broad description of the methods reported for the synthesis of α-acyloxy ketones and some of their derivatives. α-Acyloxy ketones and their derivatives are vital synthetic intermediates and are ubiquitous as biochemical constituents of living organisms, biologically active natural products and pharmaceuticals. Due to their biological importance, new methods for their synthesis are being continuously developed and documented in the recent past. However, the chemical literature lacks a comprehensive summary on the synthetic methodologies targeting α-acyloxy ketones. In an attempt to fill this void, this review discusses their synthetic procedures developed over time. The synthetic approaches are systematically classified based on the substrates used. The mechanistic details for certain critical cases are also discussed. In the past, preparation of α-acyloxy ketones was reported from functionalized ketones like α-haloketones and diazo esters. Later on, among the reactions that formed the acyloxy ketones, oxidative coupling of ketones with carboxylic acids both under metal and metal-free conditions made their synthesis simple and versatile. Specifically, in the last decade, many oxidative coupling reactions emerged as a powerful tool for the synthesis of α-acyloxy ketones. Quite recently, acyloxy ketones' synthesis has been reported from commercially available alkenes and alkynes through oxidative addition reactions. Subsequently, the mechanistic details for these coupling reactions became interesting to many organic chemists. The asymmetric version of the title compounds hails from their enzymatic resolution to metal catalysed chiral synthesis. Besides, the synthesis of acyloxy ketones from epoxides, alcohols and enamides using various oxidative reagents has also been documented.
本综述广泛描述了用于合成α-烷氧基酮及其部分衍生物的方法。α-烷氧基酮及其衍生物是重要的合成中间体,作为生物有机体内的生化成分、生物活性天然产物和药物无处不在。由于其生物学重要性,新的合成方法在最近一直在不断发展和记录。然而,化学文献缺乏针对α-烷氧基酮的综合合成方法总结。为了填补这一空白,本综述讨论了它们的合成方法。根据所用的底物,合成方法被系统地分类。还讨论了某些关键情况的反应机理细节。过去,α-烷氧基酮是从官能化酮如α-卤代酮和重氮酯中制备的。后来,在形成烷氧基酮的反应中,在金属和无金属条件下酮与羧酸的氧化偶联使它们的合成变得简单且多功能。具体来说,在过去十年中,许多氧化偶联反应已成为合成α-烷氧基酮的有力工具。最近,通过氧化加成反应,可从商业可得的烯烃和炔烃中报道了烷氧基酮的合成。随后,这些偶联反应的机理细节引起了许多有机化学家的兴趣。标题化合物的不对称版本来自于它们的酶解以实现金属催化的手性合成。此外,还记录了使用各种氧化试剂从环氧化物、醇和烯胺合成烷氧基酮。