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Deposition of Ni nanoparticles onto porous supports using supercritical CO2: effect of the precursor and reduction methodology

机译:使用超临界CO2将Ni纳米颗粒沉积到多孔载体上:前驱体和还原方法的影响

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摘要

The deposition of Ni nanoparticles into porous supports is very important in catalysis. In this paper, we explore the use of supercritical CO2 (scCO2) as a green solvent to deposit Ni nanoparticles on mesoporous SiO2 SBA-15 and a carbon xerogel. The good transport properties of scCO2 allowed the efficient penetration of metal precursors dissolved in scCO2 within the pores of the support without damaging its structure. Nickel hexafluoroacetylacetonate hydrate, nickel acetylacetonate, bis(cyclopentadienyl)nickel, Ni(NO3)2⋅6H2O and NiCl2⋅6H2O were tried as precursors. Different methodologies were used: impregnation in scCO2 and reduction in H2/N2 at 400°C and low pressure, reactive deposition using H2 at 200–250°C in scCO2 and reactive deposition using ethanol at 150–200°C in scCO2. The effect of precursor and methodology on the nickel particle size and the material homogeneity (on the different substrates) was analysed. This technology offers many opportunities in the preparation of metal-nanostructured materials.
机译:Ni纳米颗粒在多孔载体中的沉积在催化中非常重要。在本文中,我们探索了使用超临界CO2(scCO2)作为绿色溶剂将Ni纳米颗粒沉积在介孔SiO2 SBA-15和碳干凝胶上的方法。 scCO2的良好传输性能允许溶解在scCO2中的金属前体有效渗透到载体孔中,而不会破坏其结构。尝试使用六氟乙酰丙酮镍水合物,乙酰丙酮镍,双(环戊二烯基)镍,Ni(NO3)2·6H2O和NiCl2·6H2O作为前体。使用了不同的方法:在scCO2中浸渍和在400°C和低压下还原H2 / N2;在scCO2中使用H2在200–250°C下进行反应性沉积;在scCO2中使用150–200°C在乙醇中进行反应性沉积。分析了前驱物和方法对镍粒度和材料均质性(在不同基材上)的影响。这项技术为制备金属纳米结构材料提供了许多机会。

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