首页> 外文期刊>Journal of the American Chemical Society >Combined Ruthenium(Ⅱ) and Lipase Catalysis for Efficient Dynamic Kinetic Resolution of Secondary Alcohols. Insight into the Racemization Mechanism
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Combined Ruthenium(Ⅱ) and Lipase Catalysis for Efficient Dynamic Kinetic Resolution of Secondary Alcohols. Insight into the Racemization Mechanism

机译:钌(Ⅱ)和脂肪酶的联合催化有效地动力学拆分仲醇。洞察消旋机制

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Pentaphenylcyclopentadienyl ruthenium complexes (3) are excellent catalysts for the racemization of secondary alcohols at ambient temperature. The combination of this process with enzymatic resolution of the alcohols results in a highly efficient synthesis of enantiomerically pure acetates at room temperature with short reaction times for most substrates. This new reaction was applied to a wide range of functionalized alcohols including heteroaromatic alcohols, and for many of the latter, enantiopure acetates were efficiently prepared for the first time via dynamic kinetic resolution (DKR). Different substituted cyclopentadienyl ruthenium complexes were prepared and studied as catalysts for racemization of alcohols. Pentaaryl-substituted cyclopentadienyl complexes were found to be highly efficient catalysts for the racemization. Substitution of one of the aryl groups by an alkyl group considerably slows down the racemization process. A study of the racemization of (S)-1 -phenylethanol catalyzed by ruthenium hydride η~5-Ph_5CpRu(CO)_2H (8) indicates that the racemization takes place within the coordination sphere of the ruthenium catalyst. This conclusion was supported by the lack of ketone exchange in the racemization of (S)-1-pheny(ethanol performed in the presence of p-tolyl methyl ketone (1 equiv), which gave < 1% of 1-(p-tolyl)ethanol. The structures of ruthenium chloride and iodide complexes 3a and 3c and of ruthenium hydride complex 8 were confirmed by X-ray analysis.
机译:五苯环戊二烯基钌配合物(3)是仲醇在环境温度下外消旋的极佳催化剂。该方法与醇的酶促拆分相结合,可在室温下高效合成对映体纯的乙酸盐,且大多数底物的反应时间短。该新反应被应用于包括杂芳族醇在内的各种功能化醇,对于许多后者,通过动态动力学拆分(DKR)首次有效地制备了对映纯乙酸酯。制备了不同的取代的环戊二烯基钌配合物,并研究了其作为醇外消旋化的催化剂。发现五芳基取代的环戊二烯基络合物是高效消旋的催化剂。烷基取代芳基之一会大大减慢外消旋过程。对氢化钌η〜5-Ph_5CpRu(CO)_2H(8)催化的(S)-1-苯乙醇外消旋化的研究表明,外消旋化是在钌催化剂的配位范围内发生的。该结论得到(S)-1-苯(在对甲苯基甲基酮(1当量)存在下进行的乙醇的消旋作用)中酮交换的缺乏的支持,这产生了<1%的1-(对甲苯基) X射线分析证实了氯化钌和碘化物配合物3a和3c以及氢化钌配合物8的结构。

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