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Effect of nitrogen doping on the mechanical properties of carbon nanotubes

机译:氮掺杂对碳纳米管力学性能的影响

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摘要

We report on the usage of a simple microfabricated device that works in conjunction with a quantitative Nanoindenter within a scanning electron microscope (SEM) chamber, for the in situ quantitative tensile testing of individual catalytically grown pristine and nitrogen-doped multiwall carbon nanotubes (MWNTs). The two types of MWNTs were found to possess similar strengths but different load-bearing abilities owing to the differences in their wall structures. Also, stress versus strain curves and fracture surfaces showed that while the pristine MWNTs deform and fail in a brittle fashion, the nitrogen-doped MWNTs deform plastically to varying degrees prior to failure. High resolution transmission electron microscope (TEM) images of the nitrogen-doped MWNT fracture specimens showed the presence of regions of reduced cross-section areas and kinks in close proximity to the fracture surfaces. The presence of nitrogen atoms in the graphitic sheets was assumed to have led to the formation of kinks whose motion induced by straining could have resulted in the plastic deformation of the carbon nanotubes.
机译:我们报告了与扫描电子显微镜(SEM)室中的定量Nanoindenter结合使用的简单微细加工设备的使用情况,用于单个催化生长的原始和掺氮多壁碳纳米管(MWNT)的原位定量拉伸测试。发现这两种类型的MWNT具有相似的强度,但由于其壁结构的不同而具有不同的承重能力。同样,应力-应变曲线和断裂表面表明,虽然原始的MWNT发生变形并以脆性方式破坏,但掺氮的MWNT在破坏之前会发生不同程度的塑性变形。氮掺杂的MWNT断裂样品的高分辨率透射电子显微镜(TEM)图像显示,在靠近断裂面的地方存在横截面积减小的区域和扭结。假定石墨片中存在氮原子导致了扭结的形成,其扭力引起的运动可能导致碳纳米管的塑性变形。

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