Thiyagarajan Subramanian, Diskin-Posner Yael, Montag Michael, Milstein David
Department of Molecular Chemistry and Materials Science, Weizmann Institute of Science Rehovot 7610001 Israel
Department of Chemical Research Support, Weizmann Institute of Science Rehovot 7610001 Israel.
Chem Sci. 2024 Jan 16;15(7):2571-2577. doi: 10.1039/d3sc04935c. eCollection 2024 Feb 14.
The coupling of mononitriles into dinitriles is a desirable strategy, given the prevalence of nitrile compounds and the synthetic and industrial utility of dinitriles. Herein, we present an atom-economical approach for the heteroaddition of saturated nitriles to α,β- and β,γ-unsaturated mononitriles to generate glutaronitrile derivatives using a catalyst based on earth-abundant manganese. A broad range of such saturated and unsaturated nitriles were found to undergo facile heteroaddition with excellent functional group tolerance, in a reaction that proceeds under mild and base-free conditions using low catalyst loading. Mechanistic studies showed that this unique transformation takes place through a template-type pathway involving an enamido complex intermediate, which is generated by addition of a saturated nitrile to the catalyst, and acts as a nucleophile for Michael addition to unsaturated nitriles. This work represents a new application of template catalysis for C-C bond formation.
鉴于腈类化合物的普遍性以及二腈在合成和工业上的用途,将单腈偶联成二腈是一种理想的策略。在此,我们提出了一种原子经济的方法,使用基于储量丰富的锰的催化剂,使饱和腈与α,β-和β,γ-不饱和单腈进行杂加成反应,生成戊二腈衍生物。发现多种此类饱和和不饱和腈在温和且无碱的条件下,使用低催化剂负载量即可轻松进行杂加成反应,且具有出色的官能团耐受性。机理研究表明,这种独特的转化通过一种模板型途径进行,该途径涉及一个烯酰胺络合物中间体,它是由饱和腈加成到催化剂上生成的,并作为亲核试剂对不饱和腈进行迈克尔加成。这项工作代表了模板催化在碳-碳键形成方面的新应用。