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Obtaining ultra-long copper nanowires via a hydrothermal process

机译:通过水热法获得超长铜纳米线

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Ultra-long and uniform copper nanowires with controllable diameters of 30-100 nm, length up to several millimeters (aspect ratio > 10~5) and tunable crystallinity were obtained by hydrothermal processing the complex emulsion of copper (Ⅱ) chloride and ODA at 120-180℃. Both XRD pattern and EDX spectrum indicated that the products were pure copper without any observable impurities. It is observed by FESEM that the diameters and aspect ratios of the synthesized copper nanowires were influenced by the concentration of ODA and reaction temperature. HRTEM images and SAED patterns revealed that the crystallinity of copper nanowires were strongly dependent on the synthesis temperatures. Poly- and single-crystal copper nanowires were obtained at 120℃ and 180℃, respectively.
机译:通过在120℃水热处理氯化铜(Ⅱ)与ODA的复合乳液,得到直径可控制在30-100 nm,长度可达几毫米(纵横比> 10〜5),结晶度可调的超长且均匀的铜纳米线。 -180℃。 XRD图谱和EDX谱均表明产物是纯铜,没有任何可观察到的杂质。通过FESEM观察到,所合成的铜纳米线的直径和纵横比受ODA浓度和反应温度的影响。 HRTEM图像和SAED模式显示,铜纳米线的结晶度强烈依赖于合成温度。分别在120℃和180℃下得到多晶和单晶铜纳米线。

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