Department of Chemistry, University of California, Irvine, California 92697-2025, USA.
Inorg Chem. 2011 Oct 17;50(20):9849-63. doi: 10.1021/ic200911b. Epub 2011 Jul 20.
In this Forum Article, we discuss the use of redox-active pincer-type ligands to enable multielectron reactivity, specifically nitrene group transfer, at the electron-poor metals tantalum and zirconium. Two analogous ligand platforms, [ONO] and [NNN], are discussed with a detailed examination of their similarities and differences and the structural and electronic constraints they impose upon coordination to early transition metals. The two-electron redox capabilities of these ligands enable the transfer of organic nitrenes to tantalum(V) and zirconium(IV) metal centers despite formal d(0) electron counts. Under the correct conditions, the resulting metal imido complexes can participate in further multielectron reactions such as imide reduction, nitrene coupling, or formal nitrene transfer to an isocyanide.
在这篇论坛文章中,我们讨论了使用氧化还原活性的钳式配体来实现多电子反应性,特别是氮烯基团转移,在缺电子的钽和锆金属上。讨论了两种类似的配体平台,[ONO]和[NNN],并详细考察了它们的相似性和差异性,以及它们对配合到早期过渡金属时所施加的结构和电子约束。这些配体的两电子氧化还原能力使得能够将有机氮烯转移到钽(V)和锆(IV)金属中心,尽管形式上的 d(0)电子计数。在适当的条件下,所得的金属亚胺配合物可以参与进一步的多电子反应,如亚胺还原、氮烯偶联,或形式上的氮烯转移到异氰化物。