Henyecz Réka, Keglevich György
Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, 1521 Budapest, Hungary.
Curr Org Synth. 2019;16(4):523-545. doi: 10.2174/1570179416666190415110834.
The Hirao reaction discovered ca. 35 years ago is an important P-C coupling protocol between dialkyl phosphites and aryl halides in the presence of Pd(PPh3)4 as the catalyst and a base to provide aryl phosphonates. Then, the reaction was extended to other Preagents, such as secondary phosphine oxides and H-phosphinates and to other aryl and hetaryl derivatives to afford also phosphinic esters and tertiary phosphine oxides. Instead of the Pd(PPh3)4 catalyst, Pd(OAc)2 and Ni-salts were also applied as catalyst precursors together with a number of mono- and bidentate P-ligands.
In our review, we undertook to summarize the target reaction with a special stress on the developments attained in the last 6 years, hence this paper is an update of our earlier reviews in a similar topic.
"Greener" syntheses aimed at utilizing phase transfer catalytic and microwave-assisted approaches, even under "P-ligand-free. or even solvent-free conditions are the up-to date versions of the classical Hirao reaction. The mechanism of the reaction is also in the focus these days.
约35年前发现的平尾反应是亚磷酸二烷基酯与芳基卤化物在钯(四三苯基膦)作为催化剂和碱存在下进行的重要的磷-碳偶联反应,用于制备芳基膦酸酯。随后,该反应扩展到其他磷试剂,如仲膦氧化物和次膦酸酯,以及其他芳基和杂芳基衍生物,以制备次膦酸酯和叔膦氧化物。除了钯(四三苯基膦)催化剂外,醋酸钯和镍盐也被用作催化剂前体,并与许多单齿和双齿磷配体一起使用。
在我们的综述中,我们致力于总结目标反应,并特别强调过去6年中取得的进展,因此本文是我们早期类似主题综述的更新。
旨在利用相转移催化和微波辅助方法的“更绿色”合成方法,即使在“无磷配体”甚至无溶剂条件下,也是经典平尾反应的最新版本。这些天反应机理也备受关注。