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Carbon nanotube hetero-junctions: unusual deformations and mechanical vibration properties

机译:碳纳米管异质结:异常的变形和机械振动特性

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The mechanical deformation and dynamics properties of single wall carbon nanotube heterojunctions (HJ) oscillators are investigated using an hybrid finite element atomistic-continuum approach. The nanotube HJs provide a peculiar deformation pattern, with combined bending and axial stretching of carbon nanotubes (CNTs), and a broad agreement of their axial stiffness with spring series continuum mechanics and existing molecular dynamics (MD) simulations. We show also peculiar distributions of the natural frequencies and modes of the hetero-junctions compared to classical single-wall nanotube configurations, and the mass-sensor capability of (5,5)-(10,10) SWCNT HJ structures, with frequency shifts highly depending on the heterojunction section subjected to the mass loading.
机译:使用混合有限元原子连续谱方法研究了单壁碳纳米管异质结(HJ)振荡器的机械变形和动力学特性。碳纳米管HJ提供了独特的变形模式,并结合了碳纳米管(CNT)的弯曲和轴向拉伸,并且它们的轴向刚度与弹簧系列连续介质力学和现有的分子动力学(MD)模拟大致吻合。我们还显示了与经典单壁纳米管配置相比,异质结的固有频率和模态的奇特分布,以及(5,5)-(10,10)SWCNT HJ结构的质量传感器能力,具有频移在很大程度上取决于承受质量负载的异质结部分。

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