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Novel four-point-probe design and nanorobotic dual endeffector strategy for electrical characterization of as-grown SWCNT bundles

机译:新颖的四点探针设计和纳米机器人双末端执行器策略,用于表征生长中的SWCNT束

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In this paper, a novel nanorobotic strategy for non-destructive and direct electrical characterization of as-grown bundles of single-walled carbon nanotubes (SWCNTs) is presented. For this purpose, test patterns of SWCNT bundles having different diameters are grown on a silicon substrate by chemical vapor deposition. A new design of microstructured four-point-probes is proposed and fabricated allowing for direct contacting of vertically aligned bundles of SWCNTs. A nanorobotic setup is upgraded into a dual endeffector system to achieve good electrical contact between four-point-probe and SWCNT bundle and to perform electrical measurements. First experimental results of non-destructive electrical characterization are presented and discussed.
机译:在本文中,提出了一种新颖的纳米机器人策略,用于单壁碳纳米管(SWCNTs)的成束生长过程的无损和直接电学表征。为此,通过化学气相沉积在硅基板上生长具有不同直径的SWCNT束的测试图案。提出并制造了一种新的微结构四点探针设计,可以直接接触垂直排列的单壁碳纳米管束。将纳米机器人装置升级为双末端执行器系统,以实现四点探针与SWCNT束之间的良好电接触并执行电测量。提出并讨论了无损电特性的第一个实验结果。

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