Stable crystalline keteniminyl anions

IF 19.1 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Chem Pub Date : 2025-02-26 DOI:10.1016/j.chempr.2025.102444
Xin-Feng Wang, Rui Wei, Qiuming Liang, Chaopeng Hu, Liu Leo Liu
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Abstract

The synthesis, characterization, and reactivity of keteniminyl anions [R1C=C=NR2] (R1 = diazaphospholidinyl or diazathiophospholidinyl, R2 = 2,6-dimethylphenyl), a hitherto uncharted functional group, are the primary focus of this study. The keteniminyl anions are characterized by their nucleophilic/basic anionic carbon and π electrons, which are extensively delocalized along the PCCN chain. These anions undergo a range of facile reactions, such as protonation, alkylation, silylation, and metalation at the carbon site, leading to various ketenimine derivatives. They also participate in hydroamination reactions, yielding amino enamide functional groups. Additionally, the diazaphospholidinyl substituent in keteniminyl anions acts as a previously underappreciated weak π-electron acceptor when the phosphorus atom is in a pyramidalized state, thereby facilitating the stabilization of the electron-rich anionic carbon. The isolation of such keteniminyl anions not only represents a significant synthetic achievement but also heralds the potential for the future isolation of electron-rich species featuring diazaphospholidinyl substituents.

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来源期刊
Chem
Chem Environmental Science-Environmental Chemistry
CiteScore
32.40
自引率
1.30%
发文量
281
期刊介绍: Chem, affiliated with Cell as its sister journal, serves as a platform for groundbreaking research and illustrates how fundamental inquiries in chemistry and its related fields can contribute to addressing future global challenges. It was established in 2016, and is currently edited by Robert Eagling.
期刊最新文献
Stable crystalline keteniminyl anions Site-selective C(sp3)–H oxidation of alkyl substrates devoid of functional handles Enantioselective total syntheses of melotenine-, voacafrine-, and tabersonine-type Aspidosperma indole alkaloids Dicobalt-catalyzed N=N coupling reactions of tertiary alkyl azides to form azoalkanes Desymmetrizing atroposelective bromination of N-arylcarbazoles enabled by cross-assembled bifunctional catalysts
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