Zhuo Fulin, Wu Jie, Li Binhong, Li Moyang, Tan Chee Leong, Luo Zhongzhong, Sun Huabin, Xu Yong, Yu Zhihao
College of Integrated Circuit Science and Engineering, Nanjing University of Posts and Telecommunications, Nanjing 210023, China.
Guangdong Greater Bay Area Institute of Integrated Circuit and System, Guangzhou 510535, China.
Research (Wash D C). 2023;6:0057. doi: 10.34133/research.0057. Epub 2023 Mar 8.
Over the past 60 years, the semiconductor industry has been the core driver for the development of information technology, contributing to the birth of integrated circuits, Internet, artificial intelligence, and Internet of Things. Semiconductor technology has been evolving in structure and material with co-optimization of performance-power-area-cost until the state-of-the-art sub-5-nm node. Two-dimensional (2D) semiconductors are recognized by the industry and academia as a hopeful solution to break through the quantum confinement for the future technology nodes. In the recent 10 years, the key issues on 2D semiconductors regarding material, processing, and integration have been overcome in sequence, making 2D semiconductors already on the verge of application. In this paper, the evolution of transistors is reviewed by outlining the potential of 2D semiconductors as a technological option beyond the scaled metal oxide semiconductor field-effect transistors. We mainly focus on the optimization strategies of mobility (), equivalent oxide thickness (), and contact resistance ( ), which enables high ON current ( ) with reduced driving voltage ( ). Finally, we prospect the semiconductor technology roadmap by summarizing the technological development of 2D semiconductors over the past decade.
在过去的60年里,半导体行业一直是信息技术发展的核心驱动力,推动了集成电路、互联网、人工智能和物联网的诞生。半导体技术在结构和材料方面不断演进,性能、功耗、面积和成本协同优化,直至达到最先进的5纳米以下节点。二维(2D)半导体被业界和学术界公认为是突破未来技术节点量子限制的一个有希望的解决方案。在最近10年里,二维半导体在材料、加工和集成方面的关键问题已相继得到解决,使得二维半导体已处于应用边缘。本文通过概述二维半导体作为超越缩放金属氧化物半导体场效应晶体管的技术选择的潜力,回顾了晶体管的发展历程。我们主要关注迁移率()、等效氧化层厚度()和接触电阻()的优化策略,这些策略能够在降低驱动电压()的情况下实现高导通电流()。最后,我们通过总结过去十年二维半导体的技术发展,展望了半导体技术路线图。