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Enzyme-like Acceleration in Catalytic Anti-Markovnikov Hydration of Alkynes to Aldehydes

机译:丙基丙基催化抗马洛维尼科夫水合的酶加速度为醛 - 醛

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We are applying the principles of enzyme mechanism to organometallic catalysis of the reactions of nonpolar and polar molecules; for our early work using heterocyclic phosphines, please see ref. 1.(1) Here we report that whereas uncatalyzed alkyne hydration by water has a half-life measured in thousands of years, we have created improved catalysts which reduce the half-life to minutes, even at neutral pH. These data correspond to enzyme-like rate accelerations of >3,4 x (f, which is 12.8 times faster than our previously reported catalyst and 1170 times faster than the best catalyst known in the literature without a heterocyclic phosphine. In some cases, practical hydration can now be conducted at room temperature. Moreover, our improved catalysts favor anti-Markovnikov hydration over traditional Markovnikov hydration in ratios of over 1000 to 1, with aldehyde yields above 99% in many cases. In addition, we find that very active hydration catalysts can be created in situ by adding heterocyclic phosphines to otherwise inactive catalysts. The scope, limitations, and development of these reactions will be described in detail.
机译:我们正在将酶机制原理应用于非极性和极性分子反应的有机金属催化;对于我们使用杂环膦的早期工作,请参阅参考文书。 1.(1)在这里,我们报告说,随着水的未催化炔烃水合在数千年中测量的半衰期,我们创造了改进的催化剂,即使在中性pH下也要减少半衰期以分钟。这些数据对应于> 3,4 x (f的酶样速率加速度,其比先前所报道的催化剂快12.8倍,而不是在没有杂环膦中的文献中已知的最佳催化剂的速度快1170倍。在某些情况下,现在可以在室温下进行实际水合。此外,我们的改进催化剂对传统的Markovnikov水合有超过1000至1的比例,醛收益率在许多情况下,醛收益率超过99%。此外,我们发现非常活跃可以通过将杂环膦加入否则不稳的催化剂来原位地原位产生水合催化剂。将详细描述这些反应的范围,限制和发展。

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