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Mechanistic studies on the enantioselective BINOLAM/titanium(IV)-catalyzed cyanobenzoylation of aldehydes: Part 1

机译:对映选择性联萘酰胺/钛(IV)催化醛的氰基苯甲酰化的机理研究:第1部分

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The enantioselective titanium(IV)-catalyzed cyanobenzoylation of aldehydes using 1:1 BINOLAM/Ti(OiPr)_4 mixtures as a precatalyst gave O-aroyl cyanohydrins 4 with good enantiomeric excesses. The standard optimization set carried out on the assumption of Curtin-Hammett behavior, led to no amelioration. Extensive experimental and computational studies were carried out with the purpose of identifying the key mechanistic aspects governing enantioselectivity. HCN and isopropyl benzoate were detected in the reacting mixtures. This as well as the reaction response to the presence of an exogenous base, and the failure to react in the presence of Binol/Ti(OiPr)_4 mixtures, led us to propose, not a direct but an indirect process involving an enantioselective hydrocyanation step followed by O-benzoylation. Computational work carried out with mononuclear monomeric M_M and dinuclear mixed dimer D_(lMD) as catalysts support this mechanistic proposal. On the other hand, cyanobenzoylations carried out with 1:2 or higher 1:n (up to 1:5) BINOLAM/Ti(OiPr)_4 mixtures appear to involve a reversal of the enantioselection. This, together with the fact that the benzoylation of the ligated iPrOH is a slow reaction, has led us to conclude that these cyanobenzoylations do not fit within the standard Curtin-Hammett kinetic scheme. Instead, such BINOLAM/Ti(OiPr)_4 -catalyzed cyanobenzoylations of aldehydes rather behave as non-Curtin-Hammett kinetic schemes. Further computational analysis is needed in order to make a clear distinction between Curtin-Hammett and non-Curtin-Hammett kinetic frameworks.
机译:使用1:1 BINOLAM / Ti(OiPr)_4混合物作为预催化剂,对映体选择性钛(IV)催化的醛基氰基苯甲酰化,得到具有良好对映体过量度的O-芳酰基氰醇4。基于Curtin-Hammett行为的假设进行的标准优化设置没有得到改善。为了确定控制对映选择性的关键机理,进行了广泛的实验和计算研究。在反应混合物中检测到HCN和苯甲酸异丙酯。这种反应以及对外源性碱的反应,以及在Binol / Ti(OiPr)_4混合物存在下均无法反应,导致我们提出了涉及对映选择性氢氰化步骤的非直接方法或间接方法然后进行O-苯甲酰化。以单核单体M_M和双核混合二聚体D_(lMD)为催化剂进行的计算工作支持了该机理建议。另一方面,用1:2或更高的1:n(最高达1:5)BINOLAM / Ti(OiPr)_4混合物进行的氰基苯甲酰化似乎涉及对映体的逆转。这与连接的iPrOH的苯甲酰化是一个慢反应的事实一起,使我们得出结论,这些氰基苯甲酰化不符合标准的Curtin-Hammett动力学方案。相反,醛的这种BINOLAM / Ti(OiPr)_4催化的氰基苯甲酰化反而表现为非Curtin-Hammett动力学方案。为了进一步区分Curtin-Hammett和非Curtin-Hammett动力学框架,需要进行进一步的计算分析。

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