Band gap tuning of carbon nanotubes for sensor and interconnect applications — A quantum simulation study

J. Sommer, A. Zienert, S. Gemming, Helmholtz Zentrum, J. Schuster, S. Schulz, T. Gessner
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引用次数: 2

Abstract

Carbon nanotubes (CNTs) are a promising material for novel sensor and interconnect applications. In both cases, the device performance depends strongly on the electronic properties of the tubes. Methods for tuning the electronic structure and especially the band gap are highly desirable. A computational study of cobalt decorated CNTs, by means of density functional theory, reveals that very few cobalt atoms can have a significant impact on the electronic structure, turning semiconducting CNTs into the metallic state. This is further verified by quantum transport simulations. The influence of different amounts of cobalt is also investigated.
用于传感器和互连应用的碳纳米管带隙调谐-量子模拟研究
碳纳米管是一种很有前途的新型传感器和互连材料。在这两种情况下,器件性能在很大程度上取决于电子管的电子特性。调谐电子结构特别是带隙的方法是非常需要的。利用密度泛函理论对钴修饰碳纳米管的计算研究表明,很少的钴原子可以对电子结构产生显著的影响,使半导体碳纳米管转变为金属态。量子输运模拟进一步验证了这一点。还研究了不同钴含量的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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