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Modulating the Growth Rate, Aspect Ratio, and Yield of Copper Nanowires with Alkylamines

机译:用烷基胺调节铜纳米线的生长速率,纵横比和产率

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This article shows how the chain length of alkylamine capping agents and the corresponding stability of their self-assembled monolayers on a Cu surface determines the growth rate, yield, and dimensions of Cu nanowires produced in a solution-phase synthesis. Of the 10 linear alkylamines that were tested, only those with 12 or more carbon atoms induced growth of nanowires. The length, yield, and growth rate of nanowires were larger for shorter alkylamines. As the Cu nanowire growth rates were up to 1050 times smaller than the calculated diffusion-limited growth rates and the alkylamine chain length had no significant effect on the in situ generation of the reducing agent we conclude the rate of alkylamine-mediated Cu nanowire growth is limited by charge transfer. Electrochemical measurements indicate longer alkylamines form more effective passivation layers that greatly decrease the rate at which Cu alkylamine complexes are reduced onto a Cu surface. Molecular dynamics simulations show that the energy required for removal of octadecylamine from a self-assembled monolayer on the Cu surface is much larger (3.59 eV) than for removal of tetradecylamine (2.06 eV). Thus, the more stable self-assembled monolayer formed by longer-chain alkylamines leads to greater inhibition of Cu addition, slower growth, reduced yield, and reduced nanowire aspect ratio.
机译:本文展示了烷基胺封端剂的链长度如何在Cu表面上的自组装单层的相应稳定性决定了在溶液相合成中产生的Cu纳米线的生长速率,产率和尺寸。在测试的10个线性烷基胺中,仅具有12个或更多个碳原子的碳原子诱导纳米线的生长。纳米线的长度,产率和生长速率对于较短的烷基胺较大。随着Cu纳米线的生长速率比计算的扩散限制的生长速度高达1050倍,并且烷基胺链长度对还原剂的原位产生没有显着影响,我们得出结论烷基胺介导的Cu纳米线生长的速率受电荷转移限制。电化学测量表明,较长的烷基胺形成更有效的钝化层,其大大降低了Cu烷基胺配合物在Cu表面降低的速率。分子动力学模拟表明,从Cu表面上的自组装单层除去八连on胺所需的能量远大(3.59eV),以除去四癸胺(2.06eV)。因此,由较长链烷基胺形成的更稳定的自组装单层导致Cu添加,较慢的生长,降低产率和降低的纳米线纵横比的更大抑制作用。

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