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Carbon Nanotube-Based Nanomechanical Sensor: Theoretical Analysis of Mechanical and Vibrational Properties

机译:基于碳纳米管的纳米机械传感器:机械和振动特性的理论分析

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This paper reviews the recent research of carbon nanotubes (CNTs) used as nanomechanical sensing elements based mainly on theoretical models. CNTs have demonstrated considerable potential as nanomechanical mass sensor and atomic force microscope (AFM) tips. The mechanical and vibrational characteristics of CNTs are introduced to the readers. The effects of main parameters of CNTs, such as dimensions, layer number, and boundary conditions on the performance characteristics are investigated and discussed. It is hoped that this review provides knowledge on the application of CNTs as nanomechanical sensors and computational methods for predicting their properties. Their theoretical studies based on the mechanical properties such as buckling strength and vibration frequency would give a useful reference for designing CNTs as nanomechanical mass sensor and AFM probes.
机译:本文主要基于理论模型综述了碳纳米管(CNTs)作为纳米机械感测元件的最新研究。作为纳米机械质量传感器和原子力显微镜(AFM)的尖端,CNT已显示出巨大的潜力。碳纳米管的机械和振动特性被介绍给读者。研究并讨论了碳纳米管的主要参数,如尺寸,层数和边界条件对性能特征的影响。希望这篇综述提供有关碳纳米管作为纳米机械传感器的应用知识以及预测碳纳米管性能的计算方法的知识。他们基于机械特性(例如屈曲强度和振动频率)的理论研究将为设计碳纳米管作为纳米机械质量传感器和原子力显微镜探针提供有用的参考。

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