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Ultrahigh-speed rotating nanoelectromechanical system devices assembled from nanoscale building blocks

机译:由纳米级构件组装而成的超高速旋转纳米机电系统器件

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The development of rotary nanomotors is crucial for advancing nanoelectromechanical system technology. In this work, we report design, assembly and rotation of ordered arrays of nanomotors. The nanomotors are bottom-up assembled from nanoscale building blocks with nanowires as rotors, patterned nanomagnets as bearings and quadrupole microelectrodes as stators. Arrays of nanomotors rotate with controlled angle, speed (over 18,000?r.p.m.), and chirality by electric fields. Using analytical modelling, we reveal the fundamental nanoscale electrical, mechanical and magnetic interactions in the nanomotor system, which excellently agrees with experimental results and provides critical understanding for designing metallic nanoelectromechanical systems. The nanomotors can be continuously rotated for 15?h over 240,000 cycles. They are applied for controlled biochemical release and demonstrate releasing rate of biochemicals on nanoparticles that can be precisely tuned by mechanical rotations. The innovations reported in this research, from concept, design and actuation to application, are relevant to nanoelectromechanical system, nanomedicine, microfluidics and lab-on-a-chip architectures.
机译:旋转纳米电动机的发展对于推进纳米机电系统技术至关重要。在这项工作中,我们报告了纳米电机有序阵列的设计,组装和旋转。纳米电机是由纳米级构建块自底向上组装而成的,其中纳米线作为转子,图案化的纳米磁铁作为轴承,四极微电极作为定子。纳米马达阵列以受控的角度,速度(超过18,000?r.p.m。)和电场的手性旋转。使用分析建模,我们揭示了纳米电机系统中基本的纳米级电,机械和磁相互作用,这与实验结果非常吻合,并为设计金属纳米机电系统提供了关键的理解。纳米电机可以在240,000个循环中连续旋转15?h。它们可用于受控的生化物质释放,并演示可通过机械旋转精确调整的生化物质在纳米颗粒上的释放速率。这项研究报告的创新,从概念,设计,驱动到应用,都与纳米机电系统,纳米医学,微流控技术和芯片实验室架构有关。

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