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吡啶在二氢化钛骨架上向环戊二烯基骨架的脱氮环收缩反应。

Denitrogenative Ring-Contraction of Pyridines to a Cyclopentadienyl Skeleton at a Dititanium Hydride Framework.

作者信息

Zhou Xiaoxi, Zhuo Qingde, Shima Takanori, Kang Xiaohui, Hou Zhaomin

机构信息

Organometallic Chemistry Laboratory, RIKEN Cluster for Pioneering Research, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

Advanced Catalysis Research Group, RIKEN Center for Sustainable Resource Science, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

出版信息

J Am Chem Soc. 2024 Nov 13;146(45):31348-31355. doi: 10.1021/jacs.4c13439. Epub 2024 Oct 31.

DOI:10.1021/jacs.4c13439
PMID:39481038
Abstract

Selective removal of the nitrogen atom from an aromatic -heterocycle, such as pyridine, is of significant interest and importance, yet it remains highly challenging. Here, we report an unprecedented denitrogenative ring-contraction reaction of pyridines at a dititanium hydride framework, yielding cyclopentadienyl and nitride species under mild conditions. The reaction of pyridine with a dititanium tetrahydride complex () bearing rigid acridane-based PNP-pincer ligands at room temperature produced a cyclopentadienyl/nitride complex (), in which the two Ti atoms are bridged by a nitride atom and one Ti atom is bonded to a cyclopentadienyl group formed by pyridine denitrogenation and ring-contraction. The reactions of 2-, 3-, and 4-methylpyridines with under similar conditions yielded the same product (), a methylcyclopentadienyl-ligated analog of . When 2,4- or 3,5-dimethylpyridine reacted with at 60 °C, the 1,3-dimethylcyclopentadienyl-ligated analog () formed almost quantitatively. The mechanistic details have been elucidated by isolation of key intermediates and density functional theory calculations. It was revealed that the reaction proceeded via coordination of the N atom of a pyridine unit to a Ti atom in followed by H release, C═N reduction, two C-N bond cleavage (ring-opening and denitrogenation), and C-C coupling (ring closing). The involvement of C-H activation in an isopropyl group of a PNP ligand at the later stages of the reaction significantly contributed to the stabilization of the denitrogenative ring-contraction product. This work not only provides unprecedented mechanistic insights into denitrogenation of aromatic -heterocycles but also represents a novel example of skeletal editing of aromatic -heterocycles.

摘要

从芳香杂环(如吡啶)中选择性去除氮原子具有重大意义且非常重要,但仍然极具挑战性。在此,我们报道了在二氢化钛骨架上吡啶前所未有的脱氮环收缩反应,该反应在温和条件下生成环戊二烯基和氮化物物种。吡啶与带有刚性吖啶基PNP钳形配体的四氢化二钛配合物()在室温下反应生成环戊二烯基/氮化物配合物(),其中两个钛原子由一个氮原子桥连,且一个钛原子与由吡啶脱氮和环收缩形成的环戊二烯基相连。2-、3-和4-甲基吡啶在类似条件下与反应生成相同产物(),即的甲基环戊二烯基配位类似物。当2,4-或3,5-二甲基吡啶在60℃与反应时,几乎定量地形成了1,3-二甲基环戊二烯基配位类似物()。通过关键中间体的分离和密度泛函理论计算阐明了反应机理细节。结果表明,反应通过吡啶单元的N原子与中的一个钛原子配位,随后释放H、还原C═N、两次C-N键断裂(开环和脱氮)以及C-C偶联(闭环)进行。反应后期PNP配体异丙基中C-H活化的参与对脱氮环收缩产物的稳定起到了重要作用。这项工作不仅为芳香杂环的脱氮提供了前所未有的机理见解,也代表了芳香杂环骨架编辑的一个新例子。

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