Berton Jan K E T, Heugebaert Thomas S A, Virieux David, Stevens Christian V
SynBioC Research Group, Department of Sustainable Organic Chemistry and Technology, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, 9000, Ghent, Belgium.
AM2N, Institut Charles Gerhardt, UMR 5253, Ecole Nationale Supérieure de Chimie de Montpellier (ENSCM), 8, rue de l'Ecole Normale, 34296, Montpellier, France.
Chemistry. 2017 Dec 11;23(69):17413-17431. doi: 10.1002/chem.201703129. Epub 2017 Oct 6.
The first synthesis of benzoxaphospholenes dates back to the 1960s. Since then, the structural variety of reported (benz)oxaphospholenes has steadily increased. Organophosphorus compounds have caught the interest of synthetic chemists for a couple of decades now because of their interesting biological properties. Oxaphospholenes, in particular, could serve as carbohydrate mimetics, and benzoxaphospholenes have been reported to possess bactericidal, insecticidal, herbicidal, and fungistatical properties. Transesterification reactions and addition of phosphorus nucleophiles to carbonyl compounds were reaction types that led to the production of the first (benz)oxaphospholenes. When it was discovered that allenylphosphonates could easily be obtained from propargyl alcohols and dialkyl halophosphites, the electrophile-induced cyclization reaction of these allenylphosphonate precursors resulted in a huge boom in the amount of reports on oxaphospholene synthesis. To this day, this method is still frequently used. Ring-closing metathesis and Horner-Wadsworth-Emmons reactions have also proven their potential for the preparation of oxaphospholenes. In recent years, Pd, Rh and Au-catalysis have made their entry, generating (benz)oxaphospholenes from a wide variety of simple substrates. A couple of miscellaneous methods are summarized at the end of the Review.
苯并氧杂磷杂茂的首次合成可追溯到20世纪60年代。从那时起,已报道的(苯并)氧杂磷杂茂的结构多样性稳步增加。几十年来,有机磷化合物因其有趣的生物学特性而引起了合成化学家的兴趣。特别是氧杂磷杂茂可作为碳水化合物模拟物,并且据报道苯并氧杂磷杂茂具有杀菌、杀虫、除草和抑菌特性。酯交换反应以及磷亲核试剂与羰基化合物的加成反应是导致首批(苯并)氧杂磷杂茂产生的反应类型。当发现烯丙基膦酸酯可容易地从炔丙醇和二烷基卤代亚磷酸酯获得时,这些烯丙基膦酸酯前体的亲电试剂诱导的环化反应导致了关于氧杂磷杂茂合成的报道数量大幅增加。直到今天,该方法仍被频繁使用。关环复分解反应和霍纳尔 - 沃兹沃思 - 埃蒙斯反应也已证明它们在制备氧杂磷杂茂方面的潜力。近年来,钯、铑和金催化也已涉足该领域,可从各种简单底物生成(苯并)氧杂磷杂茂。综述末尾总结了一些其他杂项方法。