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[CpRu((R)-Binop-F)(H2O)][SbF6], a New Fluxional Chiral Lewis Acid Catalyst: Synthesis, Dynamic NMR, Asymmetric Catalysis, and Theoretical Studies

机译:[CpRu((R)-Binop-F)(H2O)] [SbF6],新型手性路易斯手性酸催化剂:合成,动态NMR,不对称催化和理论研究

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摘要

The C[2]-symmetric electron-poor ligand (R)-BINOP-F (4) was prepared by reaction of (R)-BINOL with bis(pentafluorophenyl)-phosphorus bromide in the presence of triethylamine. The iodo complex [CpRu((R)-BINOP-F)(I)] ((R)-6) was obtained by substitution of two carbonyl ligands by (R)-4 in the in situ-prepared [CpRu(CO)[2]H] complex followed by reaction with iodoform. Complex 6 was reacted with [Ag(SbF[6])] in acetone to yield [CpRu((R)-BINOP-F)(acetone)][SbF[6]] ((R)-7). X-ray structures were obtained for both (R)-6 and (R)-7. The chiral one-point binding Lewis acid [CpRu((R)-BINOP-F)][SbF[6]] derived from either (R)-7 or the corresponding aquo complex (R)-8 activates methacrolein and catalyzes the Diels−Alder reaction with cyclopentadiene to give the [4 + 2] cycloadduct with an exo/endo ratio of 99:1 and an ee of 92% of the exo product. Addition occurs predominantly to the methacrolein C[α]-Re face. In solution, water in (R)-8 exchanges readily. Moreover, a second exchange process renders the diastereotopic BINOP-F phosphorus atoms equivalent. These processes were studied by the application of variable-temperature [1]H, [31]P, and [17]O NMR spectroscopy, variable-pressure [31]P and [17]O NMR spectroscopy, and, using a simpler model complex, density functional theory (DFT) calculations. The results point to a dissociative mechanism of the aquo ligand and a pendular motion of the BINOP-F ligand. NMR experiments show an energy barrier of 50.7 kJ mol[-1] (12.2 kcal mol[-1]) for the inversion of the pseudo-chirality at the ruthenium center.
机译:在三乙胺存在下,通过使(R)-BINOL与双(五氟苯基)-溴化磷反应,制备C [2]-对称的贫电子配体(R)-BINOP-F(4)。通过在原位制备的[CpRu(CO)中用(R)-4取代两个羰基配体获得碘配合物[CpRu((-)-BINOP-F)(I)]((R-6)) [2] H]配合物,然后与碘仿反应。使配合物6与[Ag(SbF [6])]在丙酮中反应,得到[CpRu(R-BINOP-F)(丙酮)] [SbF [6]](R-7)。 (R)-6和(R)-7均获得了X射线结构。衍生自(R)-7或相应的水基络合物(R)-8的手性单点结合路易斯酸[CpRu((-)-BINOP-F)] [SbF [6]]活化甲基丙烯醛并催化狄尔斯-与环戊二烯的醛反应,得到[4 + 2]环加合物,其exo / endo比率为99:1,ee为exo产物的92%。加成主要发生于甲基丙烯醛C [α] -Re脸。在溶液中,(R)-8中的水容易交换。此外,第二交换过程使得非对映体BINOP-F磷原子相等。通过应用变温[1] H,[31] P和[17] O NMR光谱,变压[31] P和[17] O NMR光谱,并使用更简单的模型,研究了这些过程复杂的密度泛函理论(DFT)计算。结果表明aquo配体的离解机制和BINOP-F配体的摆动运动。 NMR实验显示,钌中心的拟手性反转时,能垒为50.7 kJ mol [-1](12.2 kcal mol [-1])。

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