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Towards carbon-nanotube integrated devices: Optically controlled parallel integration of single-walled carbon nanotubes

机译:迈向碳纳米管集成设备:单壁碳纳米管的光控并行集成

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Where it starts and where it goes? Controlled integration of single-walled carbon nanotubes (SWNTs) into pre-designed nano-architectures is one of the major challenges to be overcome for extensive scientific research and technological applications. Various serial assembly techniques have been proposed and developed. However, they are still a long way from practical applications due to the drawbacks on reliability, yield and cost. Here we demonstrate a laser-based strategy to achieve parallel integration of SWNTs into pre-designed nano-architectures through an optically controlled in situ growth process. Optical driving forces originated from tip-induced optical near-field enhancement and laser beam polarization were applied in this study to realize the controlled placement of SWNTs at designated sites following wanted orientations on the nanometer scale. Parallel integration of SWNT arrays was achieved by adjusting laser beam diameter to cover interested nano-architectures. The laser-based process suggests an efficient and cost-effective approach for fabricating and integrating SWNT-based devices and circuits.
机译:它从哪里开始,到哪里去?将单壁碳纳米管(SWNT)受控集成到预先设计的纳米体系结构中是广泛的科学研究和技术应用要克服的主要挑战之一。已经提出并开发了各种串行组装技术。然而,由于可靠性,成品率和成本方面的缺点,它们距离实际应用还有很长的路要走。在这里,我们演示了一种基于激光的策略,可通过光控原位生长过程将SWNT并行集成到预先设计的纳米体系结构中。在这项研究中,应用了由尖端引起的光学近场增强和激光束偏振产生的光驱动力,以实现在纳米级的所需方向上将SWNT受控放置在指定位置。通过调整激光束直径以覆盖感兴趣的纳米结构,可以实现SWNT阵列的并行集成。基于激光的工艺为制造和集成基于SWNT的器件和电路提供了一种有效且具有成本效益的方法。

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