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Direction-tunable nanotwins in copper nanowires by laser-assisted electrochemical deposition

机译:激光辅助电化学沉积在铜纳米线上的方向可调纳米孪晶

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摘要

Nanotwins can improve mechanical strength and maintain high electrical conductivity in metallic nanowires. We demonstrated a method of pulsed-laser-assisted electrodeposition, which could form dense nanotwins with tunable directions in copper nanowires of uniform sizes. Transmission electron microscopy characterization showed with a growth potential of 0.2V, nanotwins tend to align along the longitudinal direction of the nanowires, whereas at a larger potential of 0.8V, nanotwins of {111}/112 type perpendicular to the longitudinal direction of the wire were formed. The two types of nanotwins were investigated by comparing the microstructures under different electrochemical conditions and laser irradiation energies. Two different mechanisms are proposedannealing twins and growth twins.
机译:纳米孪晶可以提高金属纳米线的机械强度并保持高电导率。我们演示了一种脉冲激光辅助电沉积的方法,该方法可以在尺寸均匀的铜纳米线中形成方向可调的致密纳米孪晶。透射电子显微镜表征显示出具有0.2V的生长电势,纳米孪晶趋于沿纳米线的纵向排列,而在0.8V的较大电势下,{111} / 112型纳米孪晶垂直于金属线的纵向形成了。通过比较不同电化学条件和激光照射能量下的微观结构,研究了两种类型的纳米孪晶。提出了两种不同的退火双胞胎和生长双胞胎的机制。

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