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Electronic structure calculations of metal-nanotube contacts with or without oxygen adsorption

机译:带有或不带有氧气吸附的金属-纳米管触点的电子结构计算

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摘要

The Schottky barrier at the metal-nanotube contact has been a prime issue in the nanoscale devices. Here we use ab initio density-functional calculations to investigate the electronic structure and the Fermi level alignment at the metal-nanotube contacts. Consistent with the common concept of the large (small) work function of gold (aluminum) surfaces, the Fermi level of the gold layer is found to be aligned at the valence band edge, while that of the aluminum sits at the conduction band edge of the semiconducting carbon nanotube. However, upon the oxidation, the work function of aluminum surface becomes as large as that of the clean gold surface, causing the Fermi level to be aligned at the valence band edge of the semiconducting nanotube. This suggests that the carrier type of the nanotube field effect transistor could transform from n-type to p-type upon oxygen adsorption on the electrode surface. The oxidation-induced increase of the tunneling barrier is also investigated.
机译:在金属-纳米管接触处的肖特基势垒一直是纳米器件中的主要问题。在这里,我们使用从头算密度函数计算来研究电子结构和金属纳米管接触处的费米能级排列。与金(铝)表面的大(小)功函数的一般概念一致,发现金层的费米能级在价带边缘对齐,而铝的费米能级在金属的导带边缘对齐。半导体碳纳米管。然而,在氧化时,铝表面的功函变得与纯金表面的功函一样大,从而导致费米能级在半导体纳米管的价带边缘处对准。这表明纳米管场效应晶体管的载流子类型可以在氧吸附在电极表面上时从n型转变为p型。还研究了氧化引起的隧穿势垒的增加。

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  • 作者

    Park Noejung; Hong S;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 ENG
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