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Asymmetric counteranion-directed Lewis acid organocatalysis for the scalable cyanosilylation of aldehydes

机译:不对称抗衡阴离子导向的路易斯酸有机催化醛的可扩展氰基硅烷化

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摘要

Due to the high versatility of chiral cyanohydrins, the catalytic asymmetric cyanation reaction of carbonyl compounds has attracted widespread interest. However, efficient protocols that function at a preparative scale with low catalyst loading are still rare. Here, asymmetric counteranion-directed Lewis acid organocatalysis proves to be remarkably successful in addressing this problem and enabled a molar-scale cyanosilylation in quantitative yield and with excellent enantioselectivity. Also, the catalyst loading could be lowered to a part-per-million level (50 ppm: 0.005 mol%). A readily accessible chiral disulfonimide was used, which in combination with trimethylsilyl cyanide, turned into the active silylium Lewis acid organocatalyst. The nature of a peculiar phenomenon referred to as a “dormant period”, which is mainly induced by water, was systematically investigated by means of in situ Fourier transform infrared analysis.
机译:由于手性氰醇的高度通用性,羰基化合物的催化不对称氰化反应引起了广泛的关注。然而,在制备规模上以低催化剂负载起作用的有效方案仍然很少。在此,不对称抗衡阴离子导向的路易斯酸有机催化被证明在解决该问题方面非常成功,并且能够以定量收率和优异的对映选择性进行摩尔规模的氰基硅烷化反应。而且,催化剂的负载量可以降低到百万分之一的水平(50ppm:0.005mol%)。使用容易获得的手性二磺酰亚胺,其与三甲基甲硅烷基氰化物结合,变成活性的硅基路易斯酸有机催化剂。通过原位傅里叶变换红外分析系统地研究了主要由水引起的称为“休眠期”的特殊现象的性质。

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