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Model Studies on the Ozone‐Mediated Synthesis of Cobalt Oxide Nanoparticles from Dicobalt Octacarbonyl in Ionic Liquids

机译:离子液体中二钴八羰基钴氧化物纳米粒子氧化物纳米粒子的模型研究

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摘要

Low‐temperature synthesis in ionic liquids (ILs) offers an efficient route for the preparation of metal oxide nanomaterials with tailor‐made properties in a water‐free environment. In this work, we investigated the role of 1‐butyl‐1‐methylpyrrolidinium bis(trifluoromethylsulfonyl)imide [C4C1Pyr][NTf2] in the synthesis of cobalt oxide nanoparticles from the molecular precursor Co2(CO)8 with ozone. We performed a model study in ultra‐clean, ultrahigh vacuum (UHV) conditions by infrared reflection absorption spectroscopy (IRAS) using Au(111) as a substrate. Exposure of the pure precursor to ozone at low temperatures results in the oxidation of the first layers, leading to the formation of a disordered CoxOy passivation layer. Similar protection to ozone is also achieved by deposition of an IL layer onto a precursor film prior to ozone exposure. With increasing temperature, the IL gets permeable for ozone and a cobalt oxide film forms at the IL/precursor interface. We show that the interaction with the IL mediates the oxidation and leads to a more densely packed CoxOy film compared to a direct oxidation of the precursor.
机译:离子液体(ILS)中的低温合成提供了一种有效的途径,用于制备金属氧化物纳米材料,在无水环境中具有量身定制的性能。在这项工作中,我们研究了1-丁基-1-甲基吡咯烷鎓双(三氟甲基磺酰基)酰亚胺[C4c1Pyr] [NTF2]在用臭氧的分子前体CO 2(CO)8合成钴氧化物纳米粒子中的作用。我们通过使用Au(111)作为基材的红外反射吸收光谱(IRA)在超清洁,超高真空(UHV)条件下进行了模型研究。在低温下纯前体暴露于臭氧导致第一层的氧化,导致形成无序的Coxoy钝化层。通过将IL层沉积在臭氧暴露之前,还可以通过将IL层沉积到前体膜上来实现类似的保护。随着温度的升高,IL可渗透臭氧和钴氧化物膜在IL /前体界面处形成。我们表明,与前体的直接氧化相比,与IL的相互作用介导氧化并导致更密集的Coxoy膜。

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