Bulletin of the Korean Chemical Society · 2010 · 31 citations · 23 references
Nanostructured copper compounds were grown by electrochemical anodization of copper foil in aqueous NaOH under varying conditions including electrolyte concentration, reaction temperature, current density, and reaction time. Their morphology and atomic composition were investigated by using SEM, TEM, XRD, EDS and XPS. At the conditions ([NaOH] = 1 M, 20 degrees C, 2 mA cm(-2)), wire-like orthorhombic Cu(OH)(2)nanobundles with an average width of 100 - 300 nm and length of 10 mu m were synthesized with the preferential [100] growth direction. Furthermore, when the concentration decreased to 0.5 M NaOH, the ID nanobundle structure became narrower and longer without any change in compositions or crystalline structure. Side reaction pathways appeared to compete with the ID nanostructure ormation channels: the formation of CuO nanoleaves at 50 degrees C via the sequential dehydration of Cu(OH)(2), CuO/Cu(2)O aggregates in 4 M NaOH, and Cu(2)P nanoparticles and CuO nanosheets at lower current density.
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One‐Dimensional Nanostructures: Synthesis, Characterization, and Applications
Yan Xia, Pengfei Yang, Yugang Sun et al. · Advanced Materials · 2003 · 8.5K citations
Engineering, Two-dimensional Materials, Low Dimensional Material +20
Synthesis of Gallium Nitride Nanorods Through a Carbon Nanotube-Confined Reaction
Wei‐Qiang Han, Shoushan Fan, Qunqing Li et al. · Science · 1997 · 1.3K citations