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A proof of concept: 2-pyrazolines (4,5-dihydro-1H-pyrazoles) can be used as organocatalysts via iminium activation

机译:概念验证:2-吡唑啉(4,5-二氢-1H-吡唑)可通过亚胺基化活化用作有机催化剂

摘要

Background: In the field of asymmetric aminocatalysis, chiral catalysts derived from azoles (five-membered heterocycles containing exclusively N atoms) play an important role. Surprisingly, all the catalysts used for enamine and/or iminium ion activation derive from pyrrole or imidazole. We decided to test if other reduced azole derivatives could be used as organocatalysts and particularly in aminocatalysis via iminium ion activation. The azole derivatives that came naturally to mind are the 3,5-disubstituted 2-pyrazolines (also called 4,5-dihydro-1H-pyrazoles). Methods: We synthesized racemic 3,5-diphenyl-2-pyrazoline, separated both enantiomers by chiral-HPLC on a Lux-Cellulose-4 column (heptane/ethanol 70:30 as mobile phase), determined the absolute configuration of their hydrochloride salts (pyrazolinium) by the combined use of experimental rotatory power and B3LYP/6-311++G(d,p) theoretical calculations and use one the enantiomers, the R, as the catalyst. Results: We have demonstrated that the enantiopure (R)-3,5-diphenyl-2-pyrazoline is able to catalyze the Michael addition of 1-(4-nitrophenyl)propan-2-one to cinnamaldehyde and crotonaldehyde via iminium activation. Conclusion: This is the first example of activation of both types of enals, aliphatic and aromatic, via pyrazolinium salts and opens new possibilities to the design of other type of chiral organocatalysts than the traditional pyrrole and imidazole derivatives.
机译:背景:在不对称氨基催化领域,衍生自唑类(仅含有N原子的五元杂环)的手性催化剂起着重要的作用。令人惊讶地,用于烯胺和/或亚胺离子活化的所有催化剂均衍生自吡咯或咪唑。我们决定测试是否可以将其他还原的唑衍生物用作有机催化剂,特别是在通过亚胺离子活化的氨基催化中。自然而然想到的吡咯衍生物是3,5-二取代的2-吡唑啉(也称为4,5-二氢-1H-吡唑)。方法:我们合成了外消旋的3,5-二苯基-2-吡唑啉,在Lux-Cellulose-4柱(庚烷/乙醇70:30为流动相)上通过手性HPLC分离了两种对映体,确定了其盐酸盐的绝对构型(吡唑啉鎓)通过结合使用实验旋转功率和B3LYP / 6-311 ++ G(d,p)理论计算并使用一种对映体R作为催化剂。结果:我们已经证明,对映纯(R)-3,5-二苯基-2-吡唑啉能够通过亚胺基活化催化1-(4-硝基苯基)丙-2-酮与肉桂醛和巴豆醛的迈克尔加成反应。结论:这是通过吡唑啉鎓盐活化脂肪族和芳香族两种烯类的第一个例子,为设计除传统的吡咯和咪唑衍生物以外的其他类型的手性有机催化剂提供了新的可能性。

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