Antunes Jorge M, Pereira André F G, Sakharova Nataliya A
Centre for Mechanical Engineering, Materials and Processes (CEMMPRE), Department of Mechanical Engineering, University of Coimbra, Rua Luís Reis Santos, Pinhal de Marrocos, 3030-788 Coimbra, Portugal.
Abrantes High School of Technology, Polytechnic Institute of Tomar, Quinta do Contador, Estrada da Serra, 2300-313 Tomar, Portugal.
Materials (Basel). 2022 May 5;15(9):3325. doi: 10.3390/ma15093325.
Low-dimensional structures, such as nanotubes, have been the focus of research interest for approximately three decades due to their potential for use in numerous applications in engineering and technology. In addition to extensive investigation of carbon nanotubes, those composed of elements other than carbon, the so-called non-carbon nanotubes, have also begun to be studied, since they can be more suitable for electronic and optical nano-devices than their carbon counterparts. As in the case of carbon nanotubes, theoretical (numerical and analytical) approaches have been established predominantly to study non-carbon nanotubes. So far, most of work has dealt with the investigation of the structural and electrical properties of non-carbon nanotubes, paying less attention to the evaluation of their mechanical properties. As the understanding of the mechanical behaviour of the constituents is fundamental to ensure the effective performance of nanotube-based devices, this overview aims to analyse and systematize the literature results on the elastic properties of inorganic non-carbon nanotubes.
低维结构,如纳米管,由于其在工程和技术领域众多应用中的潜力,在大约三十年里一直是研究兴趣的焦点。除了对碳纳米管进行广泛研究外,由碳以外的元素组成的纳米管,即所谓的非碳纳米管,也已开始被研究,因为它们比碳纳米管更适合用于电子和光学纳米器件。与碳纳米管的情况一样,理论(数值和分析)方法已主要用于研究非碳纳米管。到目前为止,大多数工作都涉及对非碳纳米管的结构和电学性质的研究,而较少关注其力学性质的评估。由于对组成部分力学行为的理解是确保基于纳米管的器件有效性能的基础,本综述旨在分析和系统化关于无机非碳纳米管弹性性质的文献结果。