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Effects of morphology on the micro-compression response of carbon nanotube forests

机译:micro-compression形态学的影响碳纳米管的反应森林

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This study reports the mechanical response of distinct carbon nanotube (CNT) morphologies as revealed by flat punch in situ nanoindentation in a scanning electron microscope. We find that the location of incipient deformation varies significantly by changing the CNT growth parameters. The initial buckles formed close to the growth substrate in 70 and 190 μm tall CNT forests grown with low pressure chemical vapor deposition (LPCVD) and moved to ~ 100 μm above the growth substrate when the height increased to 280 μm. Change of the recipe from LPCVD to CVD at pressures near atmospheric changed the location of the initial buckling event from the bottom half to the top half of the CNT forest. Plasma pretreatment of the catalyst also resulted in a unique CNT forest morphology in which deformation started by bending and buckling of the CNT tips. We find that the vertical gradients in CNT morphology dictate the location of incipient buckling. These new insights are critical in the design of CNT forests for a variety of applications where mechanical contact is important.
机译:这项研究报告的机械反应不同的碳纳米管(CNT)形态揭示了平冲头原位nanoindentation扫描电子显微镜。初始变形的位置不同通过改变问增长显著参数。在70年和190年生长衬底μm高的问森林生长与低压化学汽相淀积(LPCVD)和搬到~ 100μm以上当高度增加到生长基质280μm。附近的大气压力改变了位置初始屈曲的事件从底部一半的上半部分问森林。也导致了预处理的催化剂独特的问森林变形的形态由弯曲和屈曲问的技巧。我们发现垂直梯度在问形态决定初始的位置屈曲。为各种各样的设计CNT的森林应用机械触点在哪里重要的。

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