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Atomic structure and field evaporation of carbon nanotube studied by atom probe field ion microscopy

机译:原子探针场离子显微镜研究碳纳米管的原子结构和场蒸发

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Using atom probe field ion microscopy (APFIM), the structure of the apex of single-walled carbon nanotube (SWCNT) and multi-walled carbon nanotube (MWCNT) has been studied. By analyzing the FIM image, it became possible to identify the chirality and conductivity of SWCNT. However, a clear FIM image was not successfully obtained for MWCNT due possibly to the difference in heights of each graphene wall. AP of FIM images showed that ions of carbon clusters, such as C_(14)~+, C_(15)~+, C_(18)~+ and C_(20)~+, were field evaporated from SWCNT and MWCNT. Since all of these carbon clusters may include a pentagonal plane, it is considered that, under high electric field, a hexagonal plane of graphene reconstructed into pentagonal plane and consequently these clusters field evaporated by the local concentration of electric field at the protruded pentagonal plane.
机译:利用原子探针场离子显微镜(APFIM),研究了单壁碳纳米管(SWCNT)和多壁碳纳米管(MWCNT)的顶点结构。通过分析FIM图像,可以识别SWCNT的手性和电导率。但是,由于每个石墨烯壁的高度不同,未能成功获得MWCNT的清晰FIM图像。 FIM图像的AP显示,碳簇的离子,例如C_(14)〜+,C_(15)〜+,C_(18)〜+和C_(20)〜+,从SWCNT和MWCNT场蒸发。由于所有这些碳簇都可以包括五边形平面,因此可以认为,在高电场下,石墨烯的六边形平面重构为五边形平面,因此这些簇由于突出的五边形平面上的局部电场集中而蒸发。

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