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Electrical Conductivity Studies on Individual Conjugated Polymer Nanowires: Two-Probe and Four-Probe Results

机译:单个共轭聚合物纳米线的电导率研究:两探针和四探针结果

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摘要

Two- and four-probe electrical measurements on individual conjugated polymer nanowires with different diameters ranging from 20 to 190 nm have been performed to study their conductivity and nanocontact resistance. The two-probe results reveal that all the measured polymer nanowires with different diameters are semiconducting. However, the four-probe results show that the measured polymer nanowires with diameters of 190, 95–100, 35–40 and 20–25 nm are lying in the insulating, critical, metallic and insulting regimes of metal–insulator transition, respectively. The 35–40 nm nanowire displays a metal–insulator transition at around 35 K. In addition, it was found that the nanocontact resistance is in the magnitude of 104Ω at room temperature, which is comparable to the intrinsic resistance of the nanowires. These results demonstrate that four-probe electrical measurement is necessary to explore the intrinsic electronic transport properties of isolated nanowires, especially in the case of metallic nanowires, because the metallic nature of the measured nanowires may be coved by the nanocontact resistance that cannot be excluded by a two-probe technique.
机译:已对直径范围从20到190 nm的各个共轭聚合物纳米线进行了两探针和四探针电学测量,以研究其导电性和纳米接触电阻。两种探针的结果表明,所有测得的具有不同直径的聚合物纳米线都是半导体。但是,四探针结果表明,所测得的直径190、95-100、35-40和20-25 nm的聚合物纳米线分别处于金属-绝缘体过渡的绝缘,临界,金属和绝缘状态。 35-40 nm的纳米线在35 K左右显示出金属-绝缘体的跃迁。此外,发现室温下纳米接触电阻的大小为10 4 Ω,可与纳米线的固有电阻。这些结果表明,四探针电测量对于探索孤立的纳米线的固有电子传输特性是必要的,尤其是在金属纳米线的情况下,因为被测纳米线的金属性质可能被纳米接触电阻所掩盖,而纳米接触电阻不能被排除。两种探针技术。

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