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1/f Noise in Length Sorted Single-walled Carbon Nanotubes at Their Critical Percolation Conditions

机译:在其关键的渗透条件下,长度为单壁碳纳米管1 / f噪声

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The electrical noise characteristics of thin film random networks of single walled carbon nanotubes with lengths of 820nm, 210nm and 130nm, were evaluated in addition to mixed length and pure semiconducting single-walled carbon nanotube networks. This study represents one of the first experimental studies in which highly characterized length sorted single walled nanotubes networks have been investigated to isolate their contributions to 1/f noise. In this work we evaluate the noise power spectrum, in the low frequency range, for each of our type sorted samples and demonstrate the effect of nanotube type, length, dimensionality and critical percolation conditions in 1/f noise generating mechanisms. 1/f noise in two-dimensional (2-D) thin films of random network, homogeneous length sorted SWNTs at their percolation threshold in contrast to three dimensional (3-D) thin films of mixed length SWNT and purely semi-conducting SWNT thin films were investigated. We find that at their respective critical percolation thresholds, xc, length sorted SWNT networks exhibit atypical reduced noise amplitude (A) characteristics compared to their mixed length and semi-conducting nanotube counterparts.
机译:除了混合长度和纯半导体单壁碳纳米管网络之外,还评估单壁碳纳米管的单壁碳纳米管的薄膜随机网络的电噪声特性,除了混合的长度和纯半导体单壁碳纳米管网络之外,还评估了820nm,210nm和130nm。本研究代表了第一次实验研究之一,其中已经研究了高度表征的单壁纳米管网络,以将它们的贡献与1 / f噪声隔离。在这项工作中,我们评估了我们类型的每个类型分类样品的低频范围内的噪声功率谱,并证明了在1 / F噪声产生机构中的纳米管类型,长度,维度和临界渗透条件的影响。在二维(2-D)薄膜中的1 / f噪声随机网络,均匀长度在其渗滤阈值中排序阈值与三维(3-D)混合长度SWNT的薄膜和纯度半导体SWNT薄研究了电影。我们发现,在它们各自的临界渗透阈值下,XC,长度排序的SWNT网络与其混合长度和半导体纳米管对应物相比表现出非典型降低的噪声幅度(A)特性。

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