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Synthesis of Ag and Cd nanoparticles by nanosecond-pulsed discharge in liquid nitrogen
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作者 Mahmoud Trad Alexandre Nominé +4 位作者 natalie tarasenka Jaafar Ghanbaja Cédric Noel Malek Tabbal Thierry Belmonte 《Frontiers of Chemical Science and Engineering》 SCIE EI CAS CSCD 2019年第2期360-368,共9页
The synthesis of CdO, Ag2O (5nm) and Ag (~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 w... The synthesis of CdO, Ag2O (5nm) and Ag (~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 timeresolved 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. 展开更多
关键词 SPARK discharges SUBMERGED discharges timeresolved optical EMISSION SPECTROSCOPY liquid NITROGEN
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