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基于振动行为理论分析的碳纳米材料基纳米质量和纳米力传感器综述

Review on Carbon Nanomaterials-Based Nano-Mass and Nano-Force Sensors by Theoretical Analysis of Vibration Behavior.

作者信息

Shi Jin-Xing, Lei Xiao-Wen, Natsuki Toshiaki

机构信息

Department of Production Systems Engineering and Sciences, Komatsu University, Nu 1-3 Shicyomachi, Komatsu, Ishikawa 923-8511, Japan.

Department of Mechanical Engineering, University of Fukui, 3-9-1 Bunkyo, Fukui 910-8507, Japan.

出版信息

Sensors (Basel). 2021 Mar 9;21(5):1907. doi: 10.3390/s21051907.

Abstract

Carbon nanomaterials, such as carbon nanotubes (CNTs), graphene sheets (GSs), and carbyne, are an important new class of technological materials, and have been proposed as nano-mechanical sensors because of their extremely superior mechanical, thermal, and electrical performance. The present work reviews the recent studies of carbon nanomaterials-based nano-force and nano-mass sensors using mechanical analysis of vibration behavior. The mechanism of the two kinds of frequency-based nano sensors is firstly introduced with mathematical models and expressions. Afterward, the modeling perspective of carbon nanomaterials using continuum mechanical approaches as well as the determination of their material properties matching with their continuum models are concluded. Moreover, we summarize the representative works of CNTs/GSs/carbyne-based nano-mass and nano-force sensors and overview the technology for future challenges. It is hoped that the present review can provide an insight into the application of carbon nanomaterials-based nano-mechanical sensors. Showing remarkable results, carbon nanomaterials-based nano-mass and nano-force sensors perform with a much higher sensitivity than using other traditional materials as resonators, such as silicon and ZnO. Thus, more intensive investigations of carbon nanomaterials-based nano sensors are preferred and expected.

摘要

碳纳米材料,如碳纳米管(CNT)、石墨烯片(GS)和卡宾,是一类重要的新型技术材料,由于其极其优异的机械、热和电学性能,已被提议用作纳米机械传感器。本文通过对振动行为的力学分析,综述了基于碳纳米材料的纳米力和纳米质量传感器的最新研究。首先用数学模型和表达式介绍了两种基于频率的纳米传感器的机理。随后,总结了用连续介质力学方法对碳纳米材料进行建模的观点以及确定其与连续介质模型相匹配的材料性能的方法。此外,我们总结了基于碳纳米管/石墨烯片/卡宾的纳米质量和纳米力传感器的代表性工作,并概述了应对未来挑战的技术。希望本综述能为基于碳纳米材料的纳米机械传感器的应用提供见解。基于碳纳米材料的纳米质量和纳米力传感器表现出显著的结果,其灵敏度比使用其他传统材料(如硅和氧化锌)作为谐振器要高得多。因此,人们更倾向于并期望对基于碳纳米材料的纳米传感器进行更深入的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8a1/7967185/7b0c0539fa53/sensors-21-01907-g001.jpg

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