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用于金属/半导体碳纳米管纳米级识别的具有更高空间分辨率的外差式高谐波静电力显微镜。

Heterodyne High-Harmonic Electrostatic Force Microscopy with Improved Spatial Resolution for Nanoscale Identification of Metallic/Semiconducting Carbon Nanotubes.

作者信息

Xu Kunqi, Xie Yufeng, Ma Saiqun, Liang Qi, Shi Zhiwen

机构信息

Key Laboratory of Artificial Structures and Quantum Control (Ministry of Education), School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, China.

Collaborative Innovation Center of Advanced Microstructures, Nanjing 210093, China.

出版信息

ACS Appl Mater Interfaces. 2024 Jul 31;16(30):39867-39875. doi: 10.1021/acsami.4c08163. Epub 2024 Jul 23.

Abstract

There are two main types of carbon nanotubes (CNTs): metallic and semiconducting. Naturally grown CNTs are randomly distributed, posing challenges in distinguishing between the two types. Here, a novel approach for nanoscale high-resolution imaging and identification of CNTs was introduced by incorporating the heterodyne technique into high-harmonic electrostatic force microscopy (HH-EFM) on an atomic force microscopy (AFM) platform. In the developed heterodyne HH-EFM, a more localized high-order gradient of tip-sample nonlinear interaction force is used as signal channels, resulting in an improved spatial resolution, compared to the conventional HH-EFM. Furthermore, the heterodyne HH-EFM also has the capability to visualize material carrier density and assess qualitative carrier transport performance. Our work not only presents a new approach to identifying/exploring electrical properties of low-dimensional nanomaterials but also provides a solution for optimizing resolution in long-range interaction-based functional AFM technologies.

摘要

碳纳米管(CNT)主要有两种类型:金属型和半导体型。自然生长的碳纳米管是随机分布的,这给区分这两种类型带来了挑战。在此,通过将外差技术整合到原子力显微镜(AFM)平台上的高谐波静电力显微镜(HH-EFM)中,引入了一种用于碳纳米管纳米级高分辨率成像和识别的新方法。在开发的外差HH-EFM中,尖端-样品非线性相互作用力的更局部化高阶梯度被用作信号通道,与传统的HH-EFM相比,空间分辨率得到了提高。此外,外差HH-EFM还能够可视化材料载流子密度并评估定性的载流子传输性能。我们的工作不仅提出了一种识别/探索低维纳米材料电学性质的新方法,还为优化基于长程相互作用的功能AFM技术的分辨率提供了解决方案。

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