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Synthesis of Ag and Cd nanoparticles by nanosecond-pulsed discharge in liquid nitrogen

机译:液氮中纳秒脉冲放电合成Ag和Cd纳米粒子

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摘要

The synthesis of CdO, Ag2O (5 nm) and Ag (approximate to 20-30 nm) nano-objects is achieved simultaneously by nanosecond-pulsed discharges in liquid nitrogen between one cadmium electrode and one silver electrode. Oxidation occurs when liquid nitrogen is fully evaporated and nanoparticles are in contact with the air. No alloy is formed, whatever the conditions, even though both elements are present simultaneously, as showed by time-resolved optical emission spectroscopy. This lack of reactivity between elements is attributed to the high pressure within the discharge that keeps each metallic vapor around the electrode it comes from. Each element exhibits a specific behavior. Cubic Cd particles, formed at 4 kV, get elongated with filamentary tips when the applied voltage reaches 7 and 10 kV. Cd wires are formed by assembly in liquid nitrogen of Cd nanoparticles driven by dipole assembly, and not by dielectrophoresis. On the contrary, silver spherical particles get assembled into 2D dendritic structures. The anisotropic growth of these structures is assumed to be due to the existence of pressure gradients.
机译:通过在一个镉电极和一个银电极之间在液氮中进行纳秒脉冲放电,可以同时实现CdO,Ag2O(5 nm)和Ag(约20-30 nm)纳米物体的合成。当液氮完全蒸发并且纳米颗粒与空气接触时,就会发生氧化。时间分辨光发射光谱表明,无论什么条件,即使两种元素同时存在,也不会形成合金。元素之间缺乏反应性的原因是放电内的高压使每种金属蒸气保持在其周围的电极周围。每个元素都表现出特定的行为。当施加的电压达到7和10 kV时,形成于4 kV的立方Cd颗粒会伸长,并带有丝状尖端。 Cd线是通过在偶极组装而不是通过介电泳的方式驱动的Cd纳米粒子的液氮中组装而形成的。相反,银球形颗粒组装成2D树状结构。这些结构的各向异性增长被认为是由于压力梯度的存在。

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