Department of Applied Chemistry , China Agricultural University , Beijing 100193 , P. R. China.
Department of Chemistry and Biochemistry , University of California, Los Angeles , 607 Charles E. Young Drive East , Los Angeles , California 90095-1569 , United States.
Chem Rev. 2018 Oct 24;118(20):10049-10293. doi: 10.1021/acs.chemrev.8b00081. Epub 2018 Sep 27.
The hallmark of nucleophilic phosphine catalysis is the initial nucleophilic addition of a phosphine to an electrophilic starting material, producing a reactive zwitterionic intermediate, generally under mild conditions. In this Review, we classify nucleophilic phosphine catalysis reactions in terms of their electrophilic components. In the majority of cases, these electrophiles possess carbon-carbon multiple bonds: alkenes (section 2), allenes (section 3), alkynes (section 4), and Morita-Baylis-Hillman (MBH) alcohol derivatives (MBHADs; section 5). Within each of these sections, the reactions are compiled based on the nature of the second starting material-nucleophiles, dinucleophiles, electrophiles, and electrophile-nucleophiles. Nucleophilic phosphine catalysis reactions that occur via the initial addition to starting materials that do not possess carbon-carbon multiple bonds are collated in section 6. Although not catalytic in the phosphine, the formation of ylides through the nucleophilic addition of phosphines to carbon-carbon multiple bond-containing compounds is intimately related to the catalysis and is discussed in section 7. Finally, section 8 compiles miscellaneous topics, including annulations of the Hüisgen zwitterion, phosphine-mediated reductions, iminophosphorane organocatalysis, and catalytic variants of classical phosphine oxide-generating reactions.
亲核膦催化的标志是膦最初对亲电起始原料的亲核加成,生成反应性两性离子中间体,通常在温和条件下进行。在这篇综述中,我们根据亲电组分对亲核膦催化反应进行分类。在大多数情况下,这些亲电试剂具有碳-碳多重键:烯烃(第 2 节)、丙二烯(第 3 节)、炔烃(第 4 节)和 Morita-Baylis-Hillman (MBH) 醇衍生物(MBHAD;第 5 节)。在这些章节中的每一节中,根据第二个起始原料-亲核试剂、二亲核试剂、亲电试剂和亲电试剂-亲核试剂的性质来编译反应。第 6 节收集了通过初始加成到不具有碳-碳多重键的起始原料发生的亲核膦催化反应。尽管在膦中不是催化的,但通过膦对含碳-碳多重键的化合物的亲核加成形成叶立德与催化密切相关,并在第 7 节中进行了讨论。最后,第 8 节汇编了杂项主题,包括 Hüisgen 两性离子的环加成、膦介导的还原、亚膦酰胺有机催化以及经典磷氧化物生成反应的催化变体。