McNeill J Nolan, Bard Jeremy P, Johnson Darren W, Haley Michael M
Department of Chemistry & Biochemistry and the Materials Science Institute, University of Oregon, Eugene, OR 97403-1253, USA.
Department of Chemistry, Washington College, Chestertown, MD 21620-1438, USA.
Chem Soc Rev. 2023 Dec 11;52(24):8599-8634. doi: 10.1039/d3cs00737e.
Six-membered heterocycles containing one phosphorus and one nitrogen atom, known as azaphosphinines, have existed in the shadows of their single heteroatom-containing analogues for almost 150 years. Despite this, recent chemistry has seen a rapid increase in publications concerning this uncommon scaffold. Azaphosphinines exist in one of six isomers-there are three possible orientations of the pnictogen atoms and in each of these, the phosphorus is in one of two valences (P P). This review aims to outline and inform on the synthesis and applications of all six isomers. P-oxo azaphosphinines are of particular interest to this review as many of the discussed heterocycles either form as the pentavalent species directly or oxidize to this over time. In very recent years the published applications of azaphosphinines have blossomed into subjects spanning several fields of chemistry such as asymmetric catalysis, supramolecular association, cellular imaging, and medicinal chemistry.
含有一个磷原子和一个氮原子的六元杂环,即氮磷杂苯,在其含单一杂原子的类似物的阴影下已存在了近150年。尽管如此,近年来关于这种不常见骨架的化学研究文献迅速增加。氮磷杂苯以六种异构体之一存在——主族原子有三种可能的取向,并且在每种取向中,磷处于两种化合价之一(P=P)。本综述旨在概述并介绍所有六种异构体的合成与应用。P-氧代氮磷杂苯是本综述特别关注的对象,因为许多所讨论的杂环要么直接以五价物种形式形成,要么随着时间推移氧化成这种形式。近年来,氮磷杂苯已发表的应用已发展成为涵盖化学多个领域的主题,如不对称催化、超分子缔合、细胞成像和药物化学。