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In Situ Formation of Carbon Nanotubes Encapsulated within Boron Nitride Nanotubes via Electron Irradiation

机译:通过电子辐照原位形成碳纳米管封装在氮化硼纳米管中

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摘要

We report experimental evidence of the formation by in situ electron-irradiation of single-walled carbon nanotubes (C-NT) confined within boron nitride nanotubes (BN-NT). The electron radiation stemming from the microscope supplies the energy required by the amorphous carbonaceous structures to crystallize in a tubular form in a catalyst-free procedure, at room temperature and high vacuum. The structural defects resulting from the interaction of the shapeless carbon with the BN nanotube are corrected in a self-healing process throughout the crystallinization. Structural changes developed during the irradiation process such as defects formation and evolution, shrinkage, and shortness of the BN-NT were in situ monitored. The outer BN wall provides a protective and insulating shell against environmental perturbations to the inner C-NT without affecting their electronic properties, as demonstrated by first-principles calculations.
机译:我们报告通过局限在氮化硼纳米管(BN-NT)中的单壁碳纳米管(C-NT)的原位电子辐照形成的实验证据。来自显微镜的电子辐射提供了无定形碳质结构在室温和高真空下以无催化剂的方式结晶成管状形式所需的能量。由无定形碳与BN纳米管相互作用产生的结构缺陷在整个结晶过程中均通过自修复过程得到了纠正。在辐照过程中发生的结构变化,例如缺陷形成和演化,收缩和BN-NT的短性,都受到了现场监测。如第一性原理计算所示,外BN壁为内C-NT提供了保护性和绝缘性的外壳,可防止环境对内C-NT的干扰,而不会影响其电子性能。

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