Wu Yimin, Deng Yayin, Tan Guangying, You Jingsong
Key Laboratory of Green Chemistry and Technology of Ministry of Education, College of Chemistry, Sichuan University, Chengdu, 610064, People's Republic of China.
Nat Commun. 2025 May 15;16(1):4499. doi: 10.1038/s41467-025-59817-9.
Iridium(III) complexes play a prominent role in organometallic chemistry, with significant research efforts directed toward CpIr(III) species, broadly categorized into cyclic and acyclic types. Although studies on these two classes began roughly simultaneously, the development of acyclic CpIr(III) complexes has lagged significantly behind their cyclic counterparts. Herein, we report a general and efficient strategy for synthesizing various persistent aryl CpIr(III)(CO)Cl complexes directly from aryl aldehydes, with in situ generated CO as a stabilizing ligand. These acyclic CpIr(III) complexes showcase exceptional reactivity, undergoing reactions with up to eight classes of nucleophiles to generate diverse diorganoiridium(III) species with remarkable stability. Electrochemical analysis of these complexes provides insights into their reductive elimination processes. Guided by these findings, CpIr(III)-mediated decarbonylative C-C and C-O cross-couplings of aryl aldehydes are successfully developed. This study establishes a robust platform for the exploration of acyclic CpIr(III) complexes, paving the way for further advancements in iridium(III) chemistry.
铱(III)配合物在有机金属化学中发挥着重要作用,大量研究工作集中在CpIr(III)物种上,大致可分为环状和非环状类型。尽管对这两类配合物的研究大致同时起步,但非环状CpIr(III)配合物的发展明显落后于其环状同类物。在此,我们报道了一种通用且高效的策略,可直接从芳醛合成各种稳定的芳基CpIr(III)(CO)Cl配合物,以原位生成的CO作为稳定配体。这些非环状CpIr(III)配合物表现出非凡的反应活性,能与多达八类亲核试剂发生反应,生成具有显著稳定性的各种二有机铱(III)物种。对这些配合物的电化学分析为其还原消除过程提供了见解。受这些发现的指导,成功开发了CpIr(III)介导的芳醛脱羰C-C和C-O交叉偶联反应。本研究为探索非环状CpIr(III)配合物建立了一个强大的平台,为铱(III)化学的进一步发展铺平了道路。