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A self-assembled synthesis of carbon nanotubes for interconnects

机译:用于互连的碳纳米管的自组装合成

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摘要

We report a novel approach to grow highly oriented, freestanding and structured carbon nanotubes (CNTs) between two substrates, using microwave plasma chemical vapour deposition. Sandwiched, multi-layered catalyst structures are employed to generate such structures. The as-grown CNTs adhere well to both the substrate and the top contact, and provide a low-resistance electric contact between the two. High-resolution scanning electron microscope (SEM) images show that the CNTs grow perpendicular to these surfaces. This presents a simple way to grow CNTs in different, predetermined directions in a single growth step. The overall resistance of a CNT bundle and two CNT-terminal contacts is measured to be about 14.7 k OMEGA. The corresponding conductance is close to the quantum limit conductance G_0- This illustrates that our new approach is promising for the direct assembly of CNT-based interconnects in integrated circuits (ICs) or other micro-electronic devices.
机译:我们报告了一种使用微波等离子体化学气相沉积法在两个基材之间生长高度取向,独立和结构化的碳纳米管(CNT)的新颖方法。采用夹层的多层催化剂结构来产生这种结构。刚生长的CNT可以很好地粘附在基板和顶部触点上,并在两者之间提供低电阻的电触点。高分辨率扫描电子显微镜(SEM)图像显示CNT垂直于这些表面生长。这提供了在单个生长步骤中以不同的预定方向生长CNT的简单方法。测得的CNT束和两个CNT端子触点的总电阻约为OMEGA 14.7 k。相应的电导接近量子极限电导G_0。这说明我们的新方法有望在集成电路(IC)或其他微电子设备中直接组装基于CNT的互连。

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