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通过氮化物插入合成杂芳烃的合成循环。

A Synthetic Cycle for Heteroarene Synthesis by Nitride Insertion.

作者信息

Kelly Patrick Q, Filatov Alexander S, Levin Mark D

机构信息

Department of Chemistry, University of Chicago, Chicago, IL 60637, USA.

出版信息

Angew Chem Int Ed Engl. 2022 Nov 14;61(46):e202213041. doi: 10.1002/anie.202213041. Epub 2022 Oct 18.

Abstract

Recent interest in skeletal editing necessitates the continued development of reagent classes with the ability to transfer single atoms. Terminal transition metal nitrides hold immense promise for single-atom transfer, though their use in organic synthesis has so far been limited. Here we demonstrate a synthetic cycle with associated detailed mechanistic studies that primes the development of terminal transition metal nitrides as valuable single-atom transfer reagents. Specifically, we show [cis-terpyOsNCl ]PF inserts nitrogen into indenes to afford isoquinolines. Mechanistic studies for each step (insertion, aromatization, product release, and nitride regeneration) are reported, including crystallographic characterization of diverted intermediates, kinetics, and computational studies. The mechanistic foundation set by this synthetic cycle opens the door to the further development of nitrogen insertion heteroarene syntheses promoted by late transition metal nitrides.

摘要

近期对骨架编辑的关注使得能够转移单个原子的试剂类别不断发展。末端过渡金属氮化物在单原子转移方面具有巨大潜力,尽管它们在有机合成中的应用迄今仍很有限。在此,我们展示了一个合成循环以及相关的详细机理研究,这为将末端过渡金属氮化物开发为有价值的单原子转移试剂奠定了基础。具体而言,我们展示了[顺式 - 三联吡啶锇氮氯]六氟磷酸根将氮插入茚中以生成异喹啉。报道了每个步骤(插入、芳构化、产物释放和氮化物再生)的机理研究,包括对转向中间体的晶体学表征、动力学和计算研究。这个合成循环所奠定的机理基础为后期过渡金属氮化物促进的氮插入杂芳烃合成的进一步发展打开了大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6637/9828148/3664d9841b80/ANIE-61-0-g001.jpg

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