Department für Chemie und Biochemie , Universität Bern , Freiestrasse 3 , CH-3012 Bern , Switzerland.
Inorg Chem. 2018 Sep 17;57(18):11761-11774. doi: 10.1021/acs.inorgchem.8b01895. Epub 2018 Sep 5.
A set of bench-stable ruthenium complexes with new N,N,N-tridentate coordinating pincer-type pyridyl-bis(pyridylideneamide) ligands was synthesized in excellent yields, with the pyridylidene amide in meta or in para position ( m-PYA and p-PYA, respectively). While complex [Ru( p-PYA)(MeCN)] is catalytically silent in transfer hydrogenation, its meta isomer [Ru( m-PYA)(MeCN)] shows considerable activity with turnover frequencies at 50% conversion TOF = 100 h. Spectroscopic, electrochemical, and crystallographic analyses suggest considerably stronger donor properties of the zwitterionic m-PYA ligand compared to the partially π-acidic p-PYA analogue, imparted by valence isomerization. Further catalyst optimization was achieved by exchanging the ancillary MeCN ligands with imines (4-picoline), amines (ethylenediamine), and phosphines (PPh, dppm, dppe). The most active catalyst was comprised of the m-PYA pincer ligand and PPh, complex [Ru( m-PYA)(PPh)(MeCN)], which reached a TOF of 430 h under aerobic conditions and up to 4000 h in the absence of oxygen. The presence of oxygen reversibly deactivates the catalytically active species, which compromises activity, but not longevity of the catalyst. Ligand exchange kinetic studies by NMR spectroscopy indicate that the strong trans effect of the phosphine is critical for high catalyst activity. Diaryl, aryl-alkyl, and dialkyl ketones were hydrogenated with high conversion, and α,β-unsaturated ketones produced selectively the saturated ketone as the only product due to exclusive C═C bond hydrogenation, a distinctly different selectivity from most other transfer hydrogenation catalysts.
一套具有新型 N,N,N-三齿配位钳式吡啶基-双(吡啶亚胺基)配体的稳定钌配合物以优异的产率合成,其中吡啶亚胺基处于间位或对位(m-PYA 和 p-PYA)。虽然配合物[Ru(p-PYA)(MeCN)]在转移氢化中没有催化活性,但它的间位异构体[Ru(m-PYA)(MeCN)]在 50%转化率时具有相当高的活性,其周转频率(TOF)为 100 h。光谱、电化学和晶体学分析表明,与部分π-酸性的 p-PYA 类似物相比,两性离子 m-PYA 配体具有相当强的供电子性质,这是由价态异构化赋予的。通过用亚胺(4-吡啶)、胺(乙二胺)和膦(PPh、dppm、dppe)取代辅助 MeCN 配体,进一步优化了催化剂。最活性的催化剂由 m-PYA 钳式配体和 PPh 组成,[Ru(m-PYA)(PPh)(MeCN)],在有氧条件下达到 430 h 的 TOF,在无氧条件下达到 4000 h。氧气的存在可逆地使催化活性物质失活,这会降低催化剂的活性,但不会影响催化剂的寿命。通过 NMR 光谱进行的配体交换动力学研究表明,膦的强反式效应对于高催化剂活性至关重要。二芳基、芳基-烷基和二烷基酮被高转化率氢化,由于 C═C 键的选择性氢化,α,β-不饱和酮只生成饱和酮作为唯一产物,这与大多数其他转移氢化催化剂的选择性明显不同。