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烯醇化物化学与阴离子-π 相互作用。

Enolate chemistry with anion-π interactions.

机构信息

Department of Organic Chemistry, University of Geneva, Geneva CH-1211, Switzerland.

出版信息

Nat Commun. 2014 May 21;5:3911. doi: 10.1038/ncomms4911.

Abstract

Anion-π interactions occur on the surface of π-acidic aromatic planes with positive quadrupole moments. Their ability to contribute to the binding and transport of anions has been demonstrated recently. However, their ability to stabilize anionic reactive intermediates and transition states remains essentially unexplored. This situation is contrary to the recognized importance of the complementary cation-π interactions to catalyse most important reactions in biology and chemistry. In this report, we provide direct experimental evidence that already single unoptimized anion-π interactions can stabilize enolates by almost two pKa units. The addition of these anion-π-stabilized reactive enolate intermediates to enones and nitroolefins occurs with transition-state stabilizations of up to 11 kJ mol(-1), and anionic cascade reactions accelerate on π-acidic surfaces. These findings are significant because enolate chemistry is central in chemistry and biology, and they will stimulate the use of anion-π interactions in catalysis in the broadest sense.

摘要

阴离子-π 相互作用发生在具有正四极矩的π-酸性芳香平面的表面上。最近已经证明了它们能够有助于阴离子的结合和运输。然而,它们稳定阴离子反应中间体和过渡态的能力基本上尚未得到探索。这种情况与公认的阳离子-π 相互作用对催化生物学和化学中最重要的反应的重要性形成对比。在本报告中,我们提供了直接的实验证据,表明即使是未经优化的阴离子-π 相互作用也可以通过几乎两个 pKa 单位稳定烯醇化物。这些阴离子-π 稳定的反应性烯醇化物中间体与烯酮和硝基烯烃的加成反应,过渡态稳定化高达 11 kJ mol(-1),而阴离子级联反应在π-酸性表面上加速。这些发现意义重大,因为烯醇化物化学在化学和生物学中处于核心地位,它们将刺激在最广泛意义上在催化中使用阴离子-π 相互作用。

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