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纳米线阵列的实现:完美排列、空气悬浮纳米线的平面阵列

Realization of Nanolene: A Planar Array of Perfectly Aligned, Air-Suspended Nanowires.

作者信息

Lee Jae-Shin, Choi Kwang-Wook, Yoo Jae-Young, Jo Min-Seung, Yoon Jun-Bo

机构信息

School of Electrical Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon, 34141, Republic of Korea.

出版信息

Small. 2020 Apr;16(13):e1906845. doi: 10.1002/smll.201906845. Epub 2020 Feb 19.

DOI:10.1002/smll.201906845
PMID:32072747
Abstract

Air suspension and alignment are fundamental requirements to make the best use of nanowires' unique properties; however, satisfying both requirements is very challenging due to the mechanical instability of air-suspended nanowires. Here, a perfectly aligned air-suspended nanowire array called "nanolene" is demonstrated, which has a high mechanical stability owing to a C-channel-shaped cross-section of the nanowires. The excellent mechanical stability is provided through geometrical modeling and finite element method simulations. The C-channel cross-section can be realized by top-down fabrication procedures, resulting in reliable demonstrations of the nanolenes with various materials and geometric parameters. The fabrication process provides large-area uniformity; therefore, nanolene can be considered as a 2D planar platform for 1D nanowire arrays. Thanks to the high mechanical stability of the proposed nanolene, perfectly aligned air-suspended nanowire arrays with an unprecedented length of 1 mm (aspect ratio ≈5100) are demonstrated. Since the nanolene can be used in an energy-efficient nanoheater, two energy-stringent sensors, namely, an air-flow sensor and a carbon monoxide gas sensor, are demonstrated. In particular, the gas sensor achieves sub-10 mW operations, which is a requirement for application in mobile phones. The proposed nanolene will pave the way to accelerate nanowire research and industrialization by providing reliable, high-performance nanowire devices.

摘要

空气悬浮和对齐是充分利用纳米线独特性能的基本要求;然而,由于空气悬浮纳米线的机械不稳定性,要同时满足这两个要求极具挑战性。在此,展示了一种名为“纳米烯”的完美对齐的空气悬浮纳米线阵列,由于纳米线的C形通道横截面,它具有很高的机械稳定性。通过几何建模和有限元方法模拟提供了出色的机械稳定性。C形通道横截面可通过自上而下的制造工艺实现,从而可靠地展示了具有各种材料和几何参数的纳米烯。制造过程提供大面积均匀性;因此,纳米烯可被视为一维纳米线阵列的二维平面平台。得益于所提出的纳米烯的高机械稳定性,展示了长度达到前所未有的1毫米(纵横比≈5100)的完美对齐的空气悬浮纳米线阵列。由于纳米烯可用于节能纳米加热器,展示了两种对能量要求严格的传感器,即气流传感器和一氧化碳气体传感器。特别是,气体传感器实现了低于10毫瓦的运行,这是应用于手机的一项要求。所提出的纳米烯将通过提供可靠、高性能的纳米线器件,为加速纳米线研究和产业化铺平道路。

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