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Nanomechanical cutting of boron nitride nanotubes by atomic force microscopy

机译:原子力显微镜对氮化硼纳米管的纳米机械切割

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摘要

The length of nanotubes is a critical structural parameter for the design and manufacture of nanotube-based material systems and devices. High-precision length control of nanotubes by means of mechanical cutting using a scriber has not materialized due to the lack of the knowledge of the appropriate cutting conditions and the tube failure mechanism. In this paper, we present a quantitative nanomechanical study of the cutting of individual boron nitride nanotubes (BNNTs) using atomic force microscopy (AFM) probes. In our nanotube cutting measurements, a nanotube standing still on a flat substrate was laterally scribed by an AFM tip. The tip-tube collision force deformed the tube, and eventually fractured the tube at the collision site by increasing the cutting load. The mechanical response of nanotubes during the tip-tube collision process and the roles of the scribing velocity and the frictional interaction on the tip-tube collision contact in cutting nanotubes were quantitatively investigated by cutting double-walled BNNTs of 2.26-4.28 nm in outer diameter. The fracture strength of BNNTs was also quantified based on the measured collision forces and their structural configurations using contact mechanics theories. Our analysis reports fracture strengths of 9.1-15.5 GPa for the tested BNNTs. The nanomechanical study presented in this paper demonstrates that the AFM-based nanomechanical cutting technique not only enables effective control of the length of nanotubes with high precision, but is also promising as a new nanomechanical testing technique for characterizing the mechanical properties of tubular nanostructures.
机译:纳米管的长度是设计和制造基于纳米管的材料系统和设备的关键结构参数。由于缺乏适当的切割条件和管破裂机理的知识,利用划线器通过机械切割对纳米管进行高精度的长度控制尚未实现。在本文中,我们提供了使用原子力显微镜(AFM)探针切割单个氮化硼纳米管(BNNT)的定量纳米力学研究。在我们进行的纳米管切割测量中,AFM尖端横向划刻了静止在平坦基板上的纳米管。尖端管的碰撞力使管变形,并最终通过增加切割负荷使管在碰撞部位破裂。通过切割外径为2.26-4.28 nm的双壁BNNT,定量研究了纳米管在尖端-管碰撞过程中的机械响应以及在切割纳米管中划线速度和尖端管碰撞接触上的摩擦相互作用的作用。 。 BNNTs的断裂强度也根据接触力学理论基于测得的碰撞力及其结构构型进行了量化。我们的分析报告称,测试的BNNT的断裂强度为9.1-15.5 GPa。本文提出的纳米力学研究表明,基于AFM的纳米力学切割技术不仅能够以高精度精确控制纳米管的长度,而且有望成为表征管状纳米结构力学性能的新型纳米力学测试技术。

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