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Nanoscale Patterning of Carbon Nanotubes: Techniques Applications and Future

机译:碳纳米管的纳米级图案:技术应用和未来

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摘要

Carbon nanotube (CNT) devices and electronics are achieving maturity and directly competing or surpassing devices that use conventional materials. CNTs have demonstrated ballistic conduction, minimal scaling effects, high current capacity, low power requirements, and excellent optical/photonic properties; making them the ideal candidate for a new material to replace conventional materials in next‐generation electronic and photonic systems. CNTs also demonstrate high stability and flexibility, allowing them to be used in flexible, printable, and/or biocompatible electronics. However, a major challenge to fully commercialize these devices is the scalable placement of CNTs into desired microanopatterns and architectures to translate the superior properties of CNTs into macroscale devices. Precise and high throughput patterning becomes increasingly difficult at nanoscale resolution, but it is essential to fully realize the benefits of CNTs. The relatively long, high aspect ratio structures of CNTs must be preserved to maintain their functionalities, consequently making them more difficult to pattern than conventional materials like metals and polymers. This review comprehensively explores the recent development of innovative CNT patterning techniques with nanoscale lateral resolution. Each technique is critically analyzed and applications for the nanoscale‐resolution approaches are demonstrated. Promising techniques and the challenges ahead for future devices and applications are discussed.
机译:碳纳米管(CNT)器件和电子设备正在实现成熟度,直接竞争或超越使用常规材料的装置。 CNT表明了弹道传导,最小的缩放效果,高电流容量,低功耗要求以及优异的光/光子性能;使它们成为新材料的理想候选者,以取代下一代电子和光子系统中的传统材料。 CNT还证明了高稳定性和灵活性,使它们可用于柔性,可印刷和/或生物相容性的电子器件。然而,完全商业化这些设备的主要挑战是CNTs进入所需的微/纳米图特纳和架构的可扩展将CNT的优异特性转换为宏观设备。在纳米级分辨率下,精确和高吞吐量图案变得越来越困难,但必须充分实现CNT的益处。必须保留CNT的相对较长的高纵横比结构以保持其功能,因此使它们比金属和聚合物等常规材料更难以模式。本综述全面探讨了纳米级横向分辨率的创新CNT图案化技术的最新开发。每个技术都是重大分析的,并证明了纳米级分辨率方法的应用。讨论了未来设备和应用前方的有希望的技术和挑战。

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