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The effect of catalysts and underlayer metals on the properties of PECVD-grown carbon nanostructures

机译:催化剂和底层金属对PECVD生长的碳纳米结构性能的影响

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摘要

The growth behaviors and contact resistances of vertically aligned carbon nanotubes (CNTs) and carbon nanofibers (CNFs) grown on different underlayer metals are investigated. The average diameter, diameter distribution, density, growth rate and contact resistance exhibit strong correlation with the choice of catalyst/underlayer combination. These observations are analyzed in terms of interactions between the catalyst and the underlayer metal. The CNT via test structure has been designed and fabricated to make current-voltage measurements on single CNTs using a nanomanipulator under scanning electron microscopy (SEM) imaging. By analyzing the dependence of measured resistance on CNT diameter, the CNT-metal contact resistance can be extracted. The contact resistances between as-grown CNTs and different underlayer metals are determined. Relationships between contact resistances and various combinations of catalysts and underlayer metals are investigated.
机译:研究了在不同底层金属上生长的垂直排列的碳纳米管(CNT)和碳纳米纤维(CNF)的生长行为和接触电阻。平均直径,直径分布,密度,生长速率和接触电阻表现出与催化剂/底层组合的选择密切相关。根据催化剂和底层金属之间的相互作用分析了这些观察结果。设计并制造了CNT通道测试结构,以便使用纳米操纵器在扫描电子显微镜(SEM)成像下对单个CNT进行电流-电压测量。通过分析测量的电阻对CNT直径的依赖性,可以提取CNT与金属的接触电阻。确定生长的CNT与不同底层金属之间的接触电阻。研究了接触电阻与催化剂和底层金属的各种组合之间的关系。

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