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碳烯功能化单壁碳纳米管及其电学性质。

Carbene-functionalized single-walled carbon nanotubes and their electrical properties.

机构信息

Microelectronics Centre School of Electrical & Electronic Engineering Nanyang Technological University Characterization Lab, S1-B2C-20, 639798 Singapore, Singapore.

出版信息

Small. 2011 May 9;7(9):1257-63. doi: 10.1002/smll.201002307. Epub 2011 Apr 12.

Abstract

Pure metallic single-walled carbon nanotubes (m-SWCNTs) are very desirable for many electrode and interconnecting applications. However, the lack of reliable processing techniques to sort m-SWCNTs from the as-synthesized SWCNT samples is an obstacle to these applications. The effects of carbene-based covalent functionalization on the electrical properties of an isolated m-SWCNT, a semiconducting (s)-SWCNT, and a mixture network of both m- and s-SWCNTs are reported. For the first time, a semiconducting-to-metallic SWCNT transition upon dichlorocarbene functionalization is observed. Interestingly, the transition is reversible upon thermal annealing under ambient conditions. The electrical properties of m-SWCNTs remain largely unaffected whereas the on-state conductivity of s-SWCNTs is greatly reduced by this process, in agreement with the relevant theoretical predictions. These findings could pave the way for fabricating large-scale SWCNT-based interconnects and electrodes in full-carbon integrated circuits.

摘要

纯金属单壁碳纳米管(m-SWCNT)非常适合许多电极和互连应用。然而,缺乏可靠的处理技术来从合成的 SWCNT 样品中对 m-SWCNT 进行分类,这是这些应用的一个障碍。本文报道了基于卡宾的共价功能化对孤立的 m-SWCNT、半导体(s)-SWCNT 和 m-和 s-SWCNT 混合网络的电性能的影响。首次观察到二氯卡宾功能化后半导体到金属的 SWCNT 转变。有趣的是,在环境条件下进行热退火后,这种转变是可逆的。m-SWCNT 的电性能基本不受影响,而 s-SWCNT 的导通态电导率则大大降低,这与相关的理论预测一致。这些发现可能为在全碳集成电路中制造基于 SWCNT 的大规模互连和电极铺平道路。

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