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Inter-allotropic transformations in the heterogeneous carbon nanotube networks

机译:Inter-allotropic转换的异构网络碳纳米管

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The allotropic transformations of carbon provide an immense technological interest for tailoring the desired molecular struc-tures in the scalable nanoelectronic devices. Herein, we explore the effects of morphology and geometric alignment of the nano-tubes for the re-engineering of carbon bonds in the heterogeneous carbon nanotube (CNT) networks. By applying alternating voltage pulses and electrical forces, the single-walled CNTs in net-works were predominantly transformed into other predetermined sp(2) carbon structures (multi-walled CNTs and multi-layered gra-phitic nanoribbons), showing a larger intensity in a coalescence-induced mode of Raman spectra with the increasing channel width. Moreover, the transformed networks have a newly discov-ered sp(2)-sp(3) hybrid nanostructures in accordance with the alignment. The sp(3) carbon structures at the small channel are con-trolled, such that they contain up to about 29.4% networks. This study provides a controllable method for specific types of inte-rallotropic transformations/hybridizations, which opens up the further possibility for the engineering of nanocarbon allotropes in the robust large-scale network-based devices.
机译:碳的同素异形转换提供一个巨大的技术对裁剪所需的分子构造的可伸缩性纳米电子设备。形态和几何校正的影响碳纳米管的再造债券在异构的碳纳米管(CNT)网络。和电子部队,单壁碳纳米管的网络主要是转化为其他预定的sp(2)碳结构(多壁碳纳米管和多层gra-phiticnanoribbons),显示在一个更大的强度coalescence-induced模式的拉曼光谱增加渠道宽度。改变了网络新discov-eredsp (2) - sp(3)混合纳米结构相一致对齐。在小通道控制,这样他们包含大约29.4%的网络。研究提供了一个具体的控制方法类型的inte-rallotropic转换/杂交过程,打开了工程的可能性健壮的大规模nanocarbon同素异形体基于网络的设备。

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