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Batch fabrication of carbon nanotube bearings

机译:批量制造碳纳米管轴承

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Relative displacements between the atomically smooth, nested shells in multiwalled carbon nanotubes (MWNTs) can be used as a robust nanoscale motion enabling mechanism. Here, we report on a novel method suited for structuring large arrays of MWNTs into such nanobearings in a parallel fashion. By creating MWNT nanostructures with nearly identical electrical circuit resistance and heat transport conditions, uniform Joule heating across the array is used to simultaneously engineer the shell geometry via electric breakdown. The biasing approach used optimizes process metrics such as yield and cycle-time. We also present the parallel and piecewise shell engineering at different segments of a single nanotube to construct multiple, but independent, high density bearings. We anticipate this method for constructing electromechanical building blocks to be a fundamental unit process for manufacturing future nanoelectromechanical systems (NEMS) with sophisticated architectures and to drive several nanoscale transduction applications such as GHz-oscillators, shuttles, memories, syringes and actuators.
机译:多壁碳纳米管(MWNT)中原子光滑的嵌套壳之间的相对位移可以用作鲁棒的纳米级运动使能机制。在这里,我们报告了一种新颖的方法,该方法适用于以并行方式将大型MWNT阵列构造成此类纳米轴承。通过创建具有几乎相同的电路电阻和热传递条件的MWNT纳米结构,可将整个阵列的均匀焦耳加热用于通过电击穿同时设计外壳的几何形状。所使用的偏置方法可优化过程指标,例如产量和周期时间。我们还介绍了在单个纳米管的不同段上进行的平行和分段壳体工程,以构造多个但独立的高密度轴承。我们期望这种用于构造机电构件的方法将成为制造具有复杂结构的未来纳米机电系统(NEMS)的基本单元过程,并驱动多种纳米级转换应用,例如GHz振荡器,梭子,存储器,注射器和执行器。

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