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首页> 外文期刊>Current Nanoscience >Deposition of Ru-Ni-S Nanoparticles on Carbon by Spray-Pyrolysis: Effects of Solvent and other Processing Parameters
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Deposition of Ru-Ni-S Nanoparticles on Carbon by Spray-Pyrolysis: Effects of Solvent and other Processing Parameters

机译:喷雾热解法在碳上沉积Ru-Ni-S纳米粒子:溶剂和其他工艺参数的影响

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Nanoparticles of Ru-Ni-S were synthesized in a single-step spray-pyrolysis process as potential catalysts for fuel cells and other applications. The liquid precursors containing ruthenium, nickel, and sulfur were nebulized by an ultra-sonic atomizer to generate aerosol droplets, which were subsequently decomposed to form uniformly distributed nanoparticles for deposition on a carbon thin film. It was observed that the application of methanol as solvent has a strong effect on the particle morphology, size, and composition. The morphology of the Ru-Ni-S nanoparticles changed from spherical with water as solvent, to dendrites upon increase in the methanol concentration in the precursor solution. It was also found that the pyrolysis temperature strongly affected the particle morphology when methanol was used as solvent. High temperatures promote dendrite formation. When a water/methanol mixture was used as solvent, crystalline ternary nanoparticles of Ru-Ni-S on a carbon layer were formed at lower temperatures. A very interesting and unique structure of spherical clusters of crystalline particles attached by a chain of crystalline nanoparticles was synthesized. Elemental analysis obtained with EDS attached to the SEM used for particle characterization has confirmed the existence of all elements of interest, and X-ray mapping showed all elements were distributed uniformly in the nanoparticles.
机译:Ru-Ni-S纳米粒子是通过一步喷雾热解法合成的,可作为燃料电池和其他应用的潜在催化剂。通过超声雾化器雾化包含钌,镍和硫的液态前驱物以生成气溶胶滴,然后将其分解以形成均匀分布的纳米颗粒,以沉积在碳薄膜上。观察到,使用甲醇作为溶剂对颗粒的形态,尺寸和组成有很大的影响。 Ru-Ni-S纳米粒子的形态从用水为溶剂的球形变化为前体溶液中甲醇浓度增加后的树枝状。还发现当使用甲醇作为溶剂时,热解温度强烈影响颗粒形态。高温促进枝晶形成。当使用水/甲醇混合物作为溶剂时,在较低温度下在碳层上形成Ru-Ni-S的结晶三元纳米颗粒。合成了一个非常有趣且独特的结构,该结构由一串结晶纳米颗粒连接而成的结晶颗粒球形簇。将EDS附加到用于颗粒表征的SEM上的元素分析已证实存在所有感兴趣的元素,并且X射线图谱显示所有元素在纳米颗粒中均匀分布。

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