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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >High-temperature electrical transport properties of buckypapers composed of doped single-walled carbon nanotubes
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High-temperature electrical transport properties of buckypapers composed of doped single-walled carbon nanotubes

机译:掺杂单壁碳纳米管组成的巴基纸的高温电传输性能

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摘要

Data on temperature-dependent electrical resistance of buckypaper flakes are presented in this paper. The buckypapers are composed of ropes of aligned single-walled carbon nanotubes doped with HNO_3, which are treated as mixed systems with their properties being dependent on the treatment performed. The measurements cover rather wide temperature range from 300 up to 900 K. In case of untreated samples, curves with two well-defined activation energies are seen, which are discussed in terms of different DC conductivity mechanisms, with a great attention paid to the parallel metal-semiconductor system. In turn, in heat-treated samples the resistance is found nearly temperature-independent except for the significant peak centered at about 600-650 K. Observed characteristics are also fitted using the parallel model, although with a less accuracy suggesting influence of another conductivity mechanisms. At any rate, the resistance peak is possibly related to the metalon-metal transition observed in disordered solids.
机译:本文介绍了巴克纸薄片的温度相关电阻数据。布基纸由掺杂有HNO_3的排列成一行的单壁碳纳米管的绳索组成,这些绳索被视为混合系统,其性能取决于所进行的处理。测量范围涵盖从300到900 K的相当宽的温度范围。在未处理的样品的情况下,可以看到具有两种定义明确的活化能的曲线,并根据不同的直流电导率机理进行了讨论,并特别注意了并联金属半导体系统。反过来,在热处理过的样品中,发现电阻几乎与温度无关,除了明显的峰值集中在大约600-650 K之外。还使用并行模型拟合了观察到的特性,尽管准确性较低,这表明其他电导率机制的影响。无论如何,电阻峰值可能与无序固体中观察到的金属/非金属转变有关。

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