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Pulsed electric field assisted assembly of polyaniline

机译:脉冲电场辅助聚苯胺组装

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Assembling conducting polyaniline (PANi) on pre-patterned nano-structures by a high rate, commercially viable route offers an opportunity for manufacturing devices with nanoscale features. In this work we report for the first time the use of pulsed electric field to assist electrophoresis for the assembly of conducting polyaniline on gold nanowire interdigitated templates. This technique offers dynamic control over heat build-up, which has been a main drawback in the DC electrophoresis and AC dielectrophoresis as well as the main cause of nanowire template damage. The use of this technique allowed higher voltages to be applied, resulting in shorter assembly times (e.g.,17.4s, assembly resolution of 100nm). Moreover, the area coverage increases with the increase in number of pulses. A similar trend was observed with the deposition height and the increase in deposition height followed a linear trend with a correlation coefficient of 0.95. When the experimental mass deposited was compared with Hamakers theoretical model, the two were found to be very close. The pre-patterned templates with PANi deposition were subsequently used to transfer the nanoscale assembled PANi from the rigid templates to thermoplastic polyurethane using the thermoforming process.
机译:以高速率,商业上可行的途径在预先构图的纳米结构上组装导电聚苯胺(PANi),为制造具有纳米级功能的器件提供了机会。在这项工作中,我们首次报告了使用脉冲电场辅助电泳在金纳米线叉指模板上组装聚苯胺的过程。该技术提供了对热量积聚的动态控制,这一直是直流电泳和交流介电电泳的主要缺点,也是纳米线模板损坏的主要原因。使用这种技术可以施加更高的电压,从而缩短组装时间(例如17.4s,组装分辨率为100nm)。而且,面积覆盖率随着脉冲数的增加而增加。观察到与沉积高度相似的趋势,并且沉积高度的增加遵循线性趋势,相关系数为0.95。将沉积的实验质量与Hamaker理论模型进行比较时,发现两者非常接近。随后使用PANi沉积的预图案化模板通过热成型工艺将纳米级组装的PANi从刚性模板转移到热塑性聚氨酯。

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