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弹道碳纳米管场效应晶体管

Ballistic carbon nanotube field-effect transistors.

作者信息

Javey Ali, Guo Jing, Wang Qian, Lundstrom Mark, Dai Hongjie

机构信息

Department of Chemistry, Stanford University, California 94305, USA.

出版信息

Nature. 2003 Aug 7;424(6949):654-7. doi: 10.1038/nature01797.

Abstract

A common feature of the single-walled carbon-nanotube field-effect transistors fabricated to date has been the presence of a Schottky barrier at the nanotube--metal junctions. These energy barriers severely limit transistor conductance in the 'ON' state, and reduce the current delivery capability--a key determinant of device performance. Here we show that contacting semiconducting single-walled nanotubes by palladium, a noble metal with high work function and good wetting interactions with nanotubes, greatly reduces or eliminates the barriers for transport through the valence band of nanotubes. In situ modification of the electrode work function by hydrogen is carried out to shed light on the nature of the contacts. With Pd contacts, the 'ON' states of semiconducting nanotubes can behave like ohmically contacted ballistic metallic tubes, exhibiting room-temperature conductance near the ballistic transport limit of 4e(2)/h (refs 4-6), high current-carrying capability (approximately 25 micro A per tube), and Fabry-Perot interferences at low temperatures. Under high voltage operation, the current saturation appears to be set by backscattering of the charge carriers by optical phonons. High-performance ballistic nanotube field-effect transistors with zero or slightly negative Schottky barriers are thus realized.

摘要

迄今为止制造的单壁碳纳米管场效应晶体管的一个共同特征是在纳米管与金属的结处存在肖特基势垒。这些能垒严重限制了晶体管在“导通”状态下的电导,并降低了电流输送能力,而电流输送能力是器件性能的一个关键决定因素。在此我们表明,用钯(一种功函数高且与纳米管具有良好浸润相互作用的贵金属)接触半导体单壁纳米管,可极大地降低或消除通过纳米管价带传输的势垒。通过氢气对电极功函数进行原位改性,以阐明接触的本质。有了钯接触,半导体纳米管的“导通”状态可表现得像欧姆接触的弹道金属管,在接近4e(2)/h的弹道传输极限(参考文献4 - 6)时展现出室温电导、高载流能力(每根管子约25微安)以及低温下的法布里 - 珀罗干涉。在高电压操作下,电流饱和似乎是由光声子对电荷载流子的背散射所决定。由此实现了具有零或略为负的肖特基势垒的高性能弹道纳米管场效应晶体管。

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