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Investigation of lewis acid versus lewis base catalysis in asymmetric cyanohydrin synthesis

机译:刘易斯酸与刘易斯碱催化不对称氰醇合成的研究

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摘要

The asymmetric addition of trimethylsilyl cyanide to aldehydes can be catalysed by Lewis acids and/or Lewis bases, which activate the aldehyde and trimethylsilyl cyanide, respectively. It is not always apparent from the structure of the catalyst whether Lewis acid or Lewis base catalysis predominates. To investigate this in the context of using salen complexes of titanium, vanadium and aluminium as catalysts, a Hammett analysis of asymmetric cyanohydrin synthesis was undertaken. When Lewis acid catalysis is dominant, a significantly positive reaction constant is observed, whereas reactions dominated by Lewis base catalysis give much smaller reaction constants. [{Ti(salen)O}_2] was found to show the highest degree of Lewis acid catalysis, whereas two [VO(salen)X] (X = EtOSO_3 or NCS) complexes both displayed lower degrees of Lewis acid catalysis. In the case of reactions catalysed by [{Al(salen)}_2O] and triphenyl- phosphine oxide, a non-linear Ham- mett plot was observed, which is indicative of a change in mechanism with increasing Lewis base catalysis as the carbonyl compound becomes more electron-deficient. These results suggested that the aluminium complex/tri- phenylphosphine oxide catalyst system should also catalyse the asymmetric addition of trimethylsilyl cyanide to ke- tones and this was found to be the case.
机译:可以通过路易斯酸和/或路易斯碱催化三甲基甲硅烷基氰化物向醛的不对称加成,所述路易斯酸和/或路易斯碱分别激活醛和三甲基甲硅烷基氰化物。从催化剂的结构并不总是显而易见的是路易斯酸或路易斯碱催化是主要的。为了在使用钛,钒和铝的塞伦络合物作为催化剂的情况下进行研究,进行了不对称氰醇合成的哈米特分析。当路易斯酸催化起主导作用时,观察到明显的正反应常数,而路易斯碱催化占主导的反应给出的反应常数小得多。发现[{Ti(salen)O} _2]显示出最高程度的路易斯酸催化,而两个[VO(salen)X](X = EtOSO_3或NCS)络合物均显示出较低程度的Lewis酸催化。在由[{Al(salen)} _ 2O]和三苯膦氧化物催化的反应情况下,观察到非线性的Hammet图,这表明随着路易斯碱催化羰基化合物的增加,机理发生了变化。变得电子不足。这些结果表明,铝络合物/三苯基氧化膦催化剂体系也应催化三甲基甲硅烷基氰化物不对称加成到酮上,事实证明是这种情况。

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