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用于先进高性能电子设备的纳米级超薄氧化铟锡

Nanometre-thin indium tin oxide for advanced high-performance electronics.

作者信息

Li Shengman, Tian Mengchuan, Gao Qingguo, Wang Mengfei, Li Tiaoyang, Hu Qianlan, Li Xuefei, Wu Yanqing

机构信息

Wuhan National High Magnetic Field Center and School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, China.

Institute of Microelectronics and Key Laboratory of Microelectronic Devices and Circuits (MoE), Peking University, Beijing, China.

出版信息

Nat Mater. 2019 Oct;18(10):1091-1097. doi: 10.1038/s41563-019-0455-8. Epub 2019 Aug 12.

Abstract

Although indium tin oxide (ITO) is widely used in optoelectronics due to its high optical transmittance and electrical conductivity, its degenerate doping limits exploitation as a semiconduction material. In this work, we created short-channel active transistors based on an ultra-thin (down to 4 nm) ITO channel and a high-quality, lanthanum-doped hafnium oxide dielectric of equivalent oxide thickness of 0.8 nm, with performance comparative to that of existing metal oxides and emerging two-dimensional materials. Short-channel immunity, with a subthreshold slope of 66 mV per decade, off-state current <100 fA μm and on/off ratio up to 5.5 × 10, was measured for a 40-nm transistor. Logic inverters working in the subthreshold regime exhibit a high gain of 178 at a low-supply voltage of 0.5 V. Moreover, radiofrequency transistors, with as-measured cut-off frequency f and maximum oscillation frequency f both >10 GHz, have been demonstrated. The unique wide bandgap and low dielectric constant of ITO provide prospects for future scaling below the 5-nm regime for advanced low-power electronics.

摘要

尽管铟锡氧化物(ITO)因其高光学透过率和导电性而在光电子学中被广泛使用,但其简并掺杂限制了其作为半导体材料的应用。在这项工作中,我们基于超薄(低至4纳米)的ITO沟道和等效氧化层厚度为0.8纳米的高质量镧掺杂铪氧化物电介质制造了短沟道有源晶体管,其性能与现有金属氧化物和新兴二维材料相当。对于一个40纳米的晶体管,测量得到其具有短沟道抗扰性,亚阈值斜率为每十倍频程66毫伏,关态电流<100飞安/微米,开/关比高达5.5×10。工作在亚阈值区域的逻辑反相器在0.5伏的低电源电压下具有178的高增益。此外,已展示出截止频率f和最大振荡频率f均大于10吉赫兹的射频晶体管。ITO独特的宽带隙和低介电常数为未来低于5纳米制程的先进低功耗电子学提供了前景。

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