Loker Hydrocarbon Research Institute and Department of Chemistry, University of Southern California, 837 Bloom Walk, Los Angeles, CA 90089-1661, USA.
Dalton Trans. 2018 Oct 2;47(38):13559-13564. doi: 10.1039/c8dt03268h.
We previously reported that iridium complex 1a enables the first homogeneous catalytic dehydrogenation of neat formic acid and enjoys unusual stability through millions of turnovers. Binuclear iridium hydride species 5a, which features a provocative C2-symmetric geometry, was isolated from the reaction as a catalyst resting state. By synthesizing and carefully examining the catalytic initiation of a series of analogues to 1a, we establish here a strong correlation between the formation of C2-twisted iridium dimers analogous to 5a and the reactivity of formic acid dehydrogenation: an efficient C2 twist appears unique to 1a and essential to catalytic reactivity.
我们之前曾报道过,铱配合物 1a 能够实现甲酸的首例均相催化脱氢反应,并通过上百万次的循环保持着不寻常的稳定性。反应中分离得到的双核铱氢物种 5a 作为催化剂的静止状态,具有一种挑衅性的 C2 对称几何形状。通过合成和仔细研究 1a 的一系列类似物的催化起始,我们在这里建立了 C2 扭曲的铱二聚体类似物 5a 的形成与甲酸脱氢反应活性之间的强相关性:有效的 C2 扭曲似乎是 1a 所独有的,对催化活性至关重要。