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氰基乙烯基阴离子 [NCO]

The Cyanoketenyl Anion [NCO].

作者信息

Krischer Felix, Swamy Varre S V S N, Feichtner Kai-Stephan, Ward Robert J, Gessner Viktoria H

机构信息

Faculty of Chemistry and Biochemistry, Ruhr-University Bochum, Universitätsstraße 150, 44801, Bochum, Germany.

出版信息

Angew Chem Int Ed Engl. 2024 May 13;63(20):e202403766. doi: 10.1002/anie.202403766. Epub 2024 Mar 27.

Abstract

Cumulenes and heterocumulenes with three or more cumulative multiple bonds are usually reactive species that serve as valuable building blocks for more complex molecules but tend to isomerize or cyclize and therefore are difficult to isolate. Using a mild ligand exchange reaction at the carbon in α-metalated ylides, we have now succeeded in the synthesis and gram-scale isolation of the elusive cyanoketenyl anion [NCO]. Despite its assumed cumulene-like structure and the delocalization of the negative charge across the whole 5-atom molecule, it features a bent geometry with a nucleophilic central carbon atom. Computational studies reveal an ambiguous bonding situation in the anion, which can be illustrated only by a combination of different resonance structures. Nonetheless, the anion features remarkable stability, thus allowing the storage of its potassium-crown ether salt and its application as a highly functional synthetic building block. The cyanoketenyl anion readily reacts with a series of small molecules to form more complex organic compounds, including industrially valuable compounds such as cyanoacetate. This work demonstrated that reactive species can be generated by novel synthesis methods and open up atom-economic pathways to complex compounds from small abundant molecules.

摘要

含有三个或更多累积多重键的累积烯烃和杂累积烯烃通常是活性物种,它们是合成更复杂分子的重要构建单元,但容易发生异构化或环化反应,因此难以分离。通过在α-金属化叶立德的碳上进行温和的配体交换反应,我们现在成功地合成并以克级规模分离出了难以捉摸的氰基乙烯基阴离子[NCO]⁻。尽管它具有类似累积烯烃的结构,且负电荷在整个五原子分子中离域,但它具有弯曲的几何结构,中心碳原子具有亲核性。计算研究表明该阴离子的成键情况不明确,只能通过不同共振结构的组合来解释。尽管如此,该阴离子具有显著的稳定性,因此可以储存其钾-冠醚盐,并将其用作高功能性的合成构建单元。氰基乙烯基阴离子很容易与一系列小分子反应,形成更复杂的有机化合物,包括具有工业价值的化合物,如氰基乙酸酯。这项工作表明,可以通过新颖的合成方法生成活性物种,并从小分子丰富的原料开辟原子经济的途径来合成复杂化合物。

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