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A novel electrochemical synthesis route for copper nanowire formation

机译:铜纳米线形成的新型电化学合成路线

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We present an alternative electrochemical synthesis process of copper nanowires from aqueous solution. The common widespread methods for the fabrication of copper nanowires suffer a number of drawbacks such as the complexity of procedures steps, the resulting nanowires usually are of short length and have a nonlinear morphology. We address these shortcomings with a one-step method that allows preparing copper nanowires fast and with a high surface-to-volume ratio. The grown nanowires are already connected to the electrodes without further processing. We found that the nanowires diameter can be controlled by the frequency of the applied alternating voltage. Furthermore, we analyze the influence of the electric field profile on the morphology of the nanowires. Using an optimized protocol we are able to grow copper nanowires with a diameter of 100 nm and a length of up to several micrometers that exhibited ohmic behavior. Future uses of the nanowires after their oxidation are sensor applications, particularly gas sensors.
机译:我们介绍了来自水溶液的铜纳米线的替代电化学合成方法。用于制造铜纳米线的常见普遍的方法遭受多种缺点,例如程序步骤的复杂性,所得纳米线通常具有短的长度并且具有非线性形态。我们用一步方法解决了这些缺点,允许快速准备铜纳米线并具有高度的体积比。生长的纳米线已经连接到电极而无需进一步加工。我们发现纳米线直径可以通过施加的交流电压的频率来控制。此外,我们分析了电场轮廓对纳米线形态的影响。使用优化的方案,我们能够将直径为100nm的铜纳米线和长达几微米的铜纳米线,其表现出欧姆行为。纳米线的未来用途是传感器应用,特别是气体传感器。

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