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Efficient Hydrogenation of Ketones and Aldehydes Catalyzedby Well-Defined Iron(II) PNP Pincer Complexes: Evidence for an InsertionMechanism

机译:酮和醛的高效加氢反应定义明确的铁(II)PNP钳配合物:插入的证据机制

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摘要

We have prepared and structurally characterized a new class of Fe(II) PNP pincer hydride complexes [Fe(PNP-iPr)(H)(CO)(L)]n (L = Br, CH3CN, pyridine, PMe3, SCN, CO, BH4; n = 0, +1) based on the 2,6-diaminopyridine scaffold where the PiPr2 moieties of the PNP ligand are connected to the pyridine ring via NH and/or NMe spacers. Complexes [Fe(PNP-iPr)(H)(CO)(L)]n with labile ligands (L = Br, CH3CN, BH4) and NH spacers are efficient catalysts for the hydrogenation of both ketones and aldehydes to alcohols under mild conditions, while those containing inert ligands (L = pyridine, PMe3, SCN, CO) are catalytically inactive. Interestingly, complex [Fe(PNPMe-iPr)(H)(CO)(Br)], featuring NMe spacers, is an efficient catalyst for the chemoselective hydrogenation of aldehydes. The first type of complexes involves deprotonation of the PNP ligand as well as heterolytic dihydrogen cleavage via metal-alkoxide cooperation, but no reversible aromatization/deprotonation of the PNP ligand. In the case of the N-methylated complex the mechanism remains unclear, but obviously does not allow bifunctional activation of dihydrogen. The experimental results complemented by DFT calculations strongly support an insertion of the C=O bond of the carbonylcompound into the Fe–H bond.
机译:我们已经制备并结构表征了一类新型的Fe(II)PNP钳形氢化物配合物[Fe(PNP-iPr)(H)(CO)(L)] n (L = Br ,CH3CN,吡啶,PMe3,SCN ,CO,BH4 ; n = 0,+ 1)基于2,6-二氨基吡啶骨架其中PNP配体的PiPr2部分通过NH和/或NMe间隔基连接到吡啶环。 [Fe(PNP-iPr)(H)(CO)(L)] n 与不稳定配体(L = Br ,CH3CN,BH4 – < / sup>)和NH间隔基是在温和条件下将酮和醛加氢成醇的有效催化剂,而含有惰性配体(L =吡啶,PMe3,SCN ,CO)的催化剂则具有催化作用。不活跃。有趣的是,具有NMe间隔基的复合物[Fe(PNP Me -iPr)(H)(CO)(Br)]是一种有效的醛化学选择性加氢催化剂。第一类络合物涉及PNP配体的去质子化以及通过金属-醇盐的合作进行的异氢裂解,但PNP配体没有可逆的芳构化/去质子化。对于N-甲基化的复合物,其机理尚不清楚,但显然不允许双氢的双功能活化。通过DFT计算补充的实验结果强烈支持羰基C = O键的插入复合成Fe–H键。

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