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双硫属键催化。

Dual Chalcogen-Chalcogen Bonding Catalysis.

机构信息

School of Chemistry and Chemical Engineering , Shandong University , Jinan 250100 , China.

出版信息

J Am Chem Soc. 2020 Feb 12;142(6):3117-3124. doi: 10.1021/jacs.9b12610. Epub 2020 Jan 30.

Abstract

The noncovalent S···O bonding interaction is an evolutionary force that has been smartly exploited by nature to modulate the conformational preferences of proteins. The employment of this type of weak noncovalent force to drive chemical reactions is promising yet remains largely elusive. Herein, we describe a dual chalcogen-chalcogen bonding catalysis strategy that the distinct chalcogen atoms simultaneously interact with two chalcogen-based electron donors to give rise to the catalytic activity, thus facilitating chemical reactions. Conventional approaches to the Rauhut-Currier-type reactions require the use of strongly nucleophilic Lewis bases as essential promoters. The implementation of this dual chalcogen-chalcogen bonding catalysis strategy allows the simultaneous Se···O bonding interaction between chalcogen-bonding donors and an enone and an alcohol, enabling the realization of the Rauhut-Currier-type reactions in a distinct way. The further implementation of a consecutive dual Se···O bonding catalysis approach enables the achievement of an initial Rauhut-Currier-type reaction to give an enone product which further undergoes an alcohol-addition induced cyclization reaction. This work demonstrates that the nearly linear chalcogen-bonding interaction can differentiate similar alkyl groups to give rise to regioselectivity. Moreover, the new strategy shows its advantage as it not only enables less reactive substrates working efficiently but tolerates inaccessible substrates using conventional methods.

摘要

非共价 S···O 键相互作用是一种进化力量,大自然巧妙地利用这种力量来调节蛋白质的构象偏好。利用这种类型的弱非共价力来驱动化学反应具有很大的潜力,但仍然难以实现。在此,我们描述了一种双重硫属-硫属键催化策略,其中不同的硫属原子同时与两个基于硫属的电子供体相互作用,从而产生催化活性,从而促进化学反应。传统的 Rauhut-Currier 型反应需要使用强亲核路易斯碱作为必需的促进剂。这种双重硫属-硫属键催化策略的实施允许硫属键供体与烯酮和醇之间同时发生 Se···O 键相互作用,从而以独特的方式实现 Rauhut-Currier 型反应。进一步实施连续的双重 Se···O 键催化方法可以实现初始的 Rauhut-Currier 型反应,得到烯酮产物,然后该产物进一步经历醇加成诱导的环化反应。这项工作表明,几乎线性的硫属键相互作用可以区分相似的烷基基团,从而产生区域选择性。此外,新策略显示出其优势,因为它不仅能够使反应性较低的底物有效地工作,而且能够容忍使用传统方法难以接近的底物。

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