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具有定制吡啶亚胺酰胺钳形钌配合物的高效转移氢化催化作用。

Highly Efficient Transfer Hydrogenation Catalysis with Tailored Pyridylidene Amide Pincer Ruthenium Complexes.

作者信息

Melle Philipp, Thiede Jan, Hey Daniela A, Albrecht Martin

机构信息

Department für Chemie und Biochemie, Universität Bern, Freiestrasse 3, 3012, Bern, Switzerland.

Fakultät für Chemie, Technische Universität München, Lichtenbergstrasse 4, 85748, Garching, Germany.

出版信息

Chemistry. 2020 Oct 15;26(58):13226-13234. doi: 10.1002/chem.202001145. Epub 2020 Sep 17.

Abstract

The rational optimization of homogeneous catalysts requires ligand platforms that are easily tailored to improve catalytic performance. Here, it is demonstrated that pyridylidene amides (PYAs) provide such a platform to custom-shape transfer hydrogenation catalysts with exceptional activity. Specifically, a series of meta-PYA pincer ligands with differently substituted PYA units has been synthezised and coordinated to ruthenium(II) centres to form bench-stable tris-acetonitrile complexes Ru(R-PYA-pincer)(MeCN) (R=OMe, Me, H, Cl, CF ). Analytic studies including H NMR spectroscopy, cyclic voltammetry, and X-ray crystallography reveal a direct influence of the substituents on the electronic properties of the ruthenium center. The complexes are active in the catalytic transfer hydrogenation of ketones, with activities directly encoded by the PYA substitution pattern. Their perfomance improves further upon exchange of an ancillary MeCN ligand with PPh . While complexes Ru(R-PYA-pincer)(PPh )(MeCN) were only isolated for R=H, Me, an in situ protocol was developed to generate these complexes in situ for R=OMe, Cl, CF by using a 1:2 ratio of the complexes and PPh . This in situ protocol together with a short catalyst pre-activation provided highly active catalytic systems. The most active pre-catalyst featured the methoxy-substituted PYA ligand and reached turnover frenquencies of 210 000 h under an exceptionally low catalyst loading of 25 ppm for the benchmark substrate benzophenone, representing one of the most active transfer hydrogenation systems known to date.

摘要

均相催化剂的合理优化需要易于定制以提高催化性能的配体平台。在此,证明了吡啶亚酰胺(PYA)提供了这样一个平台,可定制具有优异活性的转移氢化催化剂。具体而言,已合成了一系列具有不同取代PYA单元的间位PYA钳形配体,并使其与钌(II)中心配位,形成稳定的三乙腈配合物Ru(R-PYA-钳形)(MeCN)₃₂(R = OMe、Me、H、Cl、CF₃)。包括¹H NMR光谱、循环伏安法和X射线晶体学在内的分析研究揭示了取代基对钌中心电子性质的直接影响。这些配合物在酮的催化转移氢化中具有活性,其活性直接由PYA取代模式编码。当用PPh₃交换辅助的MeCN配体时,它们的性能进一步提高。虽然仅对R = H、Me分离出了配合物Ru(R-PYA-钳形)(PPh₃)(MeCN)₂₂,但开发了一种原位方案,通过使用配合物与PPh₃的1:2比例,原位生成R = OMe、Cl、CF₃的这些配合物。该原位方案与短时间的催化剂预活化一起提供了高活性的催化体系。活性最高的预催化剂具有甲氧基取代的PYA配体,对于基准底物二苯甲酮,在25 ppm的极低催化剂负载量下达到了210000 h⁻¹的周转频率,代表了迄今为止已知的最具活性的转移氢化体系之一。

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