The Arnold and Mabel Beckman Laboratory of Chemical Synthesis, Division of Chemistry and Chemical Engineering. California Institute of Technology , Pasadena, California 91125, United States.
J Am Chem Soc. 2017 Feb 1;139(4):1532-1537. doi: 10.1021/jacs.6b11330. Epub 2017 Jan 20.
Ruthenium-based olefin metathesis catalysts bearing dithiolate ligands have been recently employed to generate olefins with high E-selectivity (>99% E) but have been limited by low to moderate yields. In this report, H NMR studies reveal that a major contributing factor to this low activity is the extremely low initiation rates of these catalysts with trans olefins. Introducing a 2-isopropoxy-3-phenylbenzylidene ligand in place of the conventional 2-isopropoxybenzylidene ligand resulted in catalysts that initiate rapidly under reaction conditions. As a result, reactions were completed in significantly less time and delivered higher yields than those in previous reports while maintaining high stereoselectivity (>99% E).
基于钌的烯烃复分解催化剂带有二硫代羧酸酯配体,最近被用于生成具有高 E-选择性(>99% E)的烯烃,但产率较低且中等。在本报告中,H NMR 研究表明,导致这种低活性的一个主要因素是这些催化剂与反式烯烃的极低引发速率。用 2-异丙氧基-3-苯基苯亚甲基配体代替常规的 2-异丙氧基苯亚甲基配体,得到的催化剂在反应条件下迅速引发。结果,反应完成的时间显著缩短,产率高于以前的报道,同时保持了高立体选择性(>99% E)。