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首页> 外文期刊>Bulletin of the Korean Chemical Society >Wire-like Bundle Arrays of Copper Hydroxide Prepared by the Electrochemical Anodization of Cu Foil
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Wire-like Bundle Arrays of Copper Hydroxide Prepared by the Electrochemical Anodization of Cu Foil

机译:铜箔的电化学阳极氧化制备氢氧化铜的线状束阵列

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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°C, 2 mA cm~(-2)), wire-like orthorhombic Cu(OH)2 nanobundles with an average width of 100 - 300 nm and length of 10 um were synthesized with the preferential [100] growth direction. Furthermore, when the concentration decreased to 0.5 M NaOH, the 1D nanobundle structure became narrower and longer without any change in compositions or crystalline structure. Side reaction pathways appeared to compete with the 1D nanostructure formation channels: the formation of CuO nanoleaves at 50 °C via the sequential dehydration of Cu(OH)2, CuO/Cu2O aggregates in 4 M NaOH, and Cu2O nanoparticles and CuO nanosheets at lower current density.
机译:通过在不同的条件(包括电解质浓度,反应温度,电流密度和反应时间)下,在NaOH水溶液中对铜箔进行电化学阳极氧化,可以生长出纳米结构的铜化合物。通过SEM,TEM,XRD,EDS和XPS研究了它们的形貌和原子组成。在[NaOH] = 1 M,20°C,2 mA cm〜(-2)的条件下,线状斜方晶Cu(OH)2纳米束的平均宽度为100-300 nm,长度为10 um。以优先[100]的生长方向合成。此外,当浓度降低到0.5M NaOH时,一维纳米束结构变得更窄和更长,而组成或晶体结构没有任何变化。副反应途径似乎与一维纳米结构形成通道竞争:在50°C下通过依次脱水Cu(OH)2,CuO / Cu2O聚集体在4 M NaOH中的脱水以及较低温度下的Cu2O纳米颗粒和CuO纳米片形成的CuO纳米叶当前密度。

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