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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Stabilization of AuNPs by Monofunctional Triazole Linked to Ferrocene, Ferricenium, or Coumarin and Applications to Synthesis, Sensing, and Catalysis
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Stabilization of AuNPs by Monofunctional Triazole Linked to Ferrocene, Ferricenium, or Coumarin and Applications to Synthesis, Sensing, and Catalysis

机译:二茂铁,二茂铁或香豆素连接的单官能三唑稳定AuNPs及其在合成,传感和催化中的应用

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摘要

Monofunctional triazoles linked to ferrocene, ferricenium, or coumarin (Cou), easily synthesized by copper-catalyzed azide alkyne (CuAAC) "click" reactions between the corresponding functional azides and (trimethylsilyl)acetylene followed by silyl group deprotection, provide a variety of convenient neutral ligands for the stabilization of functional gold nanoparticles (AuNPs) in polar organic solvents. These triazole (trz)-AuNPs are very useful toward a variety of applications to synthesis, sensing, and catalysis. Both ferrocenyl (Fc) and isostructural ferricenium linked triazoles give rise to AuNP stabilization, although by different synthetic routes. Indeed, the first direct synthesis and stabilization of AuNPs by ferricenium are obtained by the reduction of HAuCl4 upon reaction with a ferrocene derivative, AuNP stabilization resulting from a synergy between electrostatic and coordination effects. The ferricenium/ ferrocene trz-AuNP redox couple is fully reversible, as shown by cyclic voltammograms that were recorded with both redox forms. These trz-AuNPs are stable for weeks in various polar solvents, but at the same time, the advantage of trz-AuNPs is the easy substitution of neutral trz ligands by thiols and other ligands, giving rise to applications. Indeed, this ligand substitution of trz at the AuNP surface yields a stable Fc-terminated nanogold-cored dendrimer upon reaction with a Fc-terminated thiol dendron, substitution of Cou-linked trz with cysteine, homocysteine, and glutathione provides remarkably efficient biothiol sensing, and a ferricenium-linked trz-AuNP catalyst is effective for NaBH4 reduction of 4-nitrophenol to 4-aminophenol. In this catalytic example, the additional electrostatic AuNP stabilization modulates the reaction rate and induction time.
机译:与二茂铁,二茂铁或香豆素(Cou)连接的单官能三唑易于通过铜催化的叠氮化物炔烃(CuAAC)在相应的官能叠氮化物和(三甲基甲硅烷基)乙炔之间进行“点击”反应,然后进行甲硅烷基基团脱保护而轻松合成中性配体,用于在极性有机溶剂中稳定功能性金纳米颗粒(AuNP)。这些三唑(trz)-AuNP对合成,传感和催化的各种应用非常有用。二茂铁基(Fc)和同结构二价铁连接的三唑均产生AuNP稳定化,尽管通过不同的合成途径。实际上,通过二茂铁与二茂铁衍生物反应可还原HAuCl4,从而实现了二价铁对AuNPs的首次直接合成和稳定化作用,而AuNP稳定化作用是由静电和配位作用之间的协同作用产生的。铁/二茂铁trz-AuNP氧化还原对是完全可逆的,如记录有两种氧化还原形式的循环伏安图所示。这些trz-AuNP在各种极性溶剂中可稳定保存数周,但与此同时,trz-AuNP的优点是中性trz配体易于被硫醇和其他配体取代,从而引起了应用。确实,在AuNP表面上trz的这种配体取代在与Fc端基的巯基树突反应后可产生稳定的Fc端基的纳米金核树状大分子,用半胱氨酸,高半胱氨酸和谷胱甘肽取代Cou-连接的trz可以提供非常有效的生物硫醇感测,铁连接的trz-AuNP催化剂对于NaBH4将4-硝基苯酚还原为4-氨基苯酚有效。在该催化实例中,附加的静电AuNP稳定作用可调节反应速率和诱导时间。

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