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Improved Metathesis Lifetime: Chelating Pyridinyl-Alcoholato Ligands in the Second Generation Grubbs Precatalyst

机译:延长复分解寿命:在第二代Grubbs预催化剂中螯合吡啶基-乙醇基配体

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摘要

Hemilabile ligands can release a free coordination site “on demand” of an incoming nucleophilic substrate while occupying it otherwise. This is believed to increase the thermal stability and activity of catalytic systems and therefore prevent decomposition via free coordination sites. In this investigation chelating pyridinyl-alcoholato ligands were identified as possible hemilabile ligands for incorporation into the second generation Grubbs precatalyst. The O,N-alcoholato ligands with different steric bulk could be successfully incorporated into the precatalysts. The incorporation of the sterically hindered, hemilabile O,N-ligands improved the thermal stability, activity, selectivity and lifetime of these complexes towards the metathesis of 1-octene. A decrease in the activity of the second generation Grubbs precatalyst was additionally observed after incorporating a hemilabile O,N-ligand with two phenyl groups into the system, while increasing their lifetime.
机译:半不稳定的配体可以“按需”释放进入的亲核底物的自由配位位点,否则占据它。据信这增加了催化体系的热稳定性和活性,因此防止了通过自由配位位点的分解。在这项研究中,螯合的吡啶基-醇基配体被确定为可能混入第二代Grubbs预催化剂的半不稳定配体。具有不同空间体积的O,N-醇基配体可以成功地掺入到预催化剂中。位阻的,半不稳定的O,N-配体的结合改善了这些配合物对1-辛烯复分解的热稳定性,活性,选择性和寿命。在将具有两个苯基的半不稳定的O,N-配体掺入系统后,还增加了第二代Grubbs预催化剂活性的降低,同时增加了它们的寿命。

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