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钼-铱多重键合配合物间的协同碳氢键活化:一系列转化反应

Synergistic C-H bond activation across molybdenum-iridium multiply bonded complexes: a cascade of transformations.

作者信息

Dubrawski Zachary, Del Rosal Iker, Jeanneau Erwann, Maron Laurent, Thieuleux Chloé, Camp Clément

机构信息

Laboratory of Catalysis, Polymerization, Processes and Materials (CP2M UMR 5128), CNRS, Universite Claude Bernard Lyon 1, CPE-Lyon, Institut de Chimie de Lyon 43 Bd du 11 Novembre 1918 F-69616 Villeurbanne France

LPCNO, Université de Toulouse, INSA Toulouse 135 Avenue de Rangueil Toulouse 31077 France.

出版信息

Chem Sci. 2025 Jul 7. doi: 10.1039/d5sc03465e.

Abstract

Heterobimetallic compounds offer unique opportunities for activating substrates through cooperative interactions between two distinct metal centers, potentially leading to catalytic reactivity beyond the reach of monometallic systems. The pairing of molybdenum with iridium has recently shown remarkable performance in heterogeneous catalytic and electrocatalytic processes, yet remains surprisingly unexplored in the context of homogeneous catalysis and well-defined molecular complexes. In this work, we address this gap by reporting the synthesis and characterization of complexes featuring rare molybdenum-iridium multiple bonds: CpIr(H)Mo(NMe), 1 and (CpIrH)Mo(NMe), 2. Both complexes undergo electrophilic insertions of heteroallenes (CO, BuNCO) into the ancillary amido ligands. In the case of compound 1, the insertion of -butyl isocyanate initiates a unique cascade of bond breaking/forming events - including triple C-H activations and C -C coupling - ultimately yielding a Mo(vi) metallacyclopropane complex, 5. Addition of multiple equivalents of isocyanate instead interrupts this mechanism, leading to C-N and C-O bonds cleavage and the formation of aminocarbyne and imido ligands bridging the Ir and Mo centers, along with a molybdenum(vi)-oxo moiety. This unprecedented reactivity, mediated by a key reaction intermediate featuring an unsupported Mo-Ir quadruple bond, illustrates the interest of heterobimetallic compounds for complex bond activation and reorganization.

摘要

异双金属化合物为通过两个不同金属中心之间的协同相互作用活化底物提供了独特的机会,这有可能导致单金属体系无法实现的催化反应活性。钼与铱的配对最近在多相催化和电催化过程中表现出显著的性能,但在均相催化和结构明确的分子配合物的背景下仍令人惊讶地未被探索。在这项工作中,我们通过报道具有罕见钼 - 铱多重键的配合物:CpIr(H)Mo(NMe),1 和 (CpIrH)Mo(NMe),2 的合成与表征来填补这一空白。两种配合物都经历了杂异腈(CO,BuNCO)向辅助酰胺配体的亲电插入反应。对于化合物 1,异丁基异氰酸酯的插入引发了一系列独特的键断裂/形成事件——包括三次 C - H 活化和 C - C 偶联——最终生成一个 Mo(VI) 金属环丙烷配合物,5。相反,加入多当量的异氰酸酯会中断这一机制,导致 C - N 和 C - O 键断裂,并形成桥连 Ir 和 Mo 中心的氨基卡宾和亚氨基配体,以及一个钼(VI)-氧代部分。这种前所未有的反应活性,由一个具有无支撑 Mo - Ir 四重键的关键反应中间体介导,说明了异双金属化合物在复杂键活化和重组方面的价值。

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