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Crystallographically aligned carbon nanotubes grown on few-layer graphene films

机译:在几层石墨烯薄膜上生长的晶体取向碳纳米管

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Carbon nanotubes are grown on few-layer graphene films using chemical vapor deposition without a carbon feedstock gas. We find that the nanotubes show a striking alignment to specific crystal orientations of the few-layer graphene films. The nanotubes are oriented predominantly at 60 degree intervals and are offset 30 degrees from crystallographically oriented etch tracks, indicating alignment to the armchair axes of the few-layer graphene films. Nanotubes grown on various thicknesses of few-layer graphene under identical process conditions show that the thinnest films, in the sub-6 atomic layer regime, demonstrate significantly improved crystallographic alignment. Intricate crystallographic patterns are also observed having sharp kinks with bending radii less than the ~10 nm lateral resolution of the electron and atomic force microscopy used to image them. Some of these kinks occur independently without interactions between nanotubes while others result when two nanotubes intersect. These intersections can trap nanotubes between two parallel nanotubes resulting in crystallographic back and forth zigzag geometries. These interactions suggest a tip-growth mechanism such that the catalyst particles remain within several nanometers of the few-layer graphene surface as they move leaving a nanotube in their wake.
机译:使用化学气相沉积法在无碳原料气的情况下将碳纳米管生长在几层石墨烯薄膜上。我们发现,纳米管对几层石墨烯薄膜的特定晶体取向显示出惊人的取向。纳米管主要以60度的间隔取向,并且与晶体取向的蚀刻轨迹偏移30度,表明与几层石墨烯薄膜的扶手椅轴对齐。在相同的工艺条件下在各种厚度的几层石墨烯上生长的纳米管表明,在亚6原子层范围内,最薄的薄膜表现出明显改善的晶体学取向。还观察到了复杂的晶体学图案,具有弯曲半径小于〜10 nm横向分辨率的锐角,该横向分辨率小于用于成像它们的电子和原子力显微镜。这些扭结中的一些扭折独立发生而在纳米管之间没有相互作用,而另一些扭折在两个纳米管相交时产生。这些交叉点可以将纳米管捕获在两个平行的纳米管之间,从而导致晶体学来回曲折的几何形状。这些相互作用提示了尖端生长机理,使得催化剂颗粒在移动时保留在少数层石墨烯表面的几纳米范围内,而纳米管则留在其尾部。

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