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CCC-NHC金(III)钳形配合物作为分离难以捉摸的物种的可靠平台。

CCC-NHC Au(iii) pincer complexes as a reliable platform for isolating elusive species.

作者信息

Valdés Hugo, Alpuente Nora, Salvador Pedro, Hashmi A Stephen K, Ribas Xavi

机构信息

Departamento de Química Orgánica y Química Inorgánica, Instituto de Investigación Química "Andrés M. del Río" (IQAR), Facultad de Farmacia, Universidad de Alcalá Alcalá de Henares 28805 Madrid Spain

Institut de Química Computacional i Catàlisi (IQCC) and Departament de Química, Universitat de Girona, Campus de Montilivi Girona E-17003 Catalonia Spain

出版信息

Chem Sci. 2024 Oct 2;15(42):17618-28. doi: 10.1039/d4sc02999b.

Abstract

The reactivity of unprecedented CCC-NHC Au(iii) pincer complexes has been investigated, employing a novel methodology for their preparation. Notably, this marks the inaugural case of CCC-NHC Au(iii) pincer complexes with a central aryl moiety where the two arms of the pincer ligand consist of N-heterocyclic carbenes (NHC). The stability conferred by the CCC-NHC ligand facilitated the isolation of elusive Au(iii) species, encompassing Au(iii)-formate, Au(iii)-F, Au(iii)-Me, and Au(iii)-alkynyl. Our study also unveiled the elusive Au(iii)-H species, offering valuable insights into its formation, stability, and reactivity. While the CCC-NHC Au(iii)-H complex remains stable at room temperature, its decomposition becomes conspicuous at elevated temperatures (>60 °C), exhibiting a more pronounced tendency under acidic conditions compared to basic ones. Through comprehensive experiments, we indirectly demonstrated the potential of Au(iii)-formate to undergo β-hydride elimination, becoming a key step in the dehydrogenation of formic acid. Theoretical calculations revealed variations in the reactivity of Au(iii)-H species towards sodium hydride and formic acid, highlighting a link between σ-donation from the pincer ligand and reaction energetics. Pincers with lower electron donation favored the reaction with sodium hydride but impeded the reaction with formic acid, whereas those with higher electron donation exhibited the opposite behavior. Additionally, the CCC-NHC Au(iii) pincer complex exhibited Lewis acid behavior, catalyzing the synthesis of phenols. In summary, the CCC-NHC Au(iii) pincer complex emerges as a versatile platform for isolating reactive species and unraveling elementary catalytic steps.

摘要

我们采用了一种新颖的制备方法,对前所未有的 CCC-NHC 金(III)钳形配合物的反应活性进行了研究。值得注意的是,这是首例具有中心芳基部分的 CCC-NHC 金(III)钳形配合物,其中钳形配体的两个臂由 N-杂环卡宾(NHC)组成。CCC-NHC 配体赋予的稳定性有助于分离难以捉摸的金(III)物种,包括金(III)-甲酸盐、金(III)-氟化物、金(III)-甲基和金(III)-炔基。我们的研究还揭示了难以捉摸的金(III)-氢物种,为其形成、稳定性和反应活性提供了有价值的见解。虽然 CCC-NHC 金(III)-氢配合物在室温下保持稳定,但在高温(>60°C)下其分解变得明显,与碱性条件相比,在酸性条件下表现出更明显的趋势。通过全面的实验,我们间接证明了金(III)-甲酸盐进行β-氢消除的潜力,这成为甲酸脱氢的关键步骤。理论计算揭示了金(III)-氢物种对氢化钠和甲酸反应活性的差异,突出了钳形配体的σ-供体作用与反应能量学之间的联系。电子供体较低的钳形配体有利于与氢化钠反应,但阻碍了与甲酸的反应,而电子供体较高的钳形配体则表现出相反的行为。此外,CCC-NHC 金(III)钳形配合物表现出路易斯酸行为,催化了酚类的合成。总之,CCC-NHC 金(III)钳形配合物成为分离活性物种和揭示基本催化步骤的通用平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c08d/11526099/5ba66d06ff9b/d4sc02999b-f1.jpg

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