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用于CMOS及超越CMOS应用的二维器件工程的分子方法。

Molecular Approach to Engineer Two-Dimensional Devices for CMOS and beyond-CMOS Applications.

作者信息

Zhao Yuda, Gobbi Marco, Hueso Luis E, Samorì Paolo

机构信息

University of Strasbourg, CNRS, ISIS UMR 7006, 8 allée Gaspard Monge, F-67000 Strasbourg, France.

School of Micro-Nano Electronics, ZJU-Hangzhou Global Scientific and Technological Innovation Centre, Zhejiang University, 38 Zheda Road, 310027 Hangzhou, People's Republic of China.

出版信息

Chem Rev. 2022 Jan 12;122(1):50-131. doi: 10.1021/acs.chemrev.1c00497. Epub 2021 Nov 24.

DOI:10.1021/acs.chemrev.1c00497
PMID:34816723
Abstract

Two-dimensional materials (2DMs) have attracted tremendous research interest over the last two decades. Their unique optical, electronic, thermal, and mechanical properties make 2DMs key building blocks for the fabrication of novel complementary metal-oxide-semiconductor (CMOS) and beyond-CMOS devices. Major advances in device functionality and performance have been made by the covalent or noncovalent functionalization of 2DMs with molecules: while the molecular coating of metal electrodes and dielectrics allows for more efficient charge injection and transport through the 2DMs, the combination of dynamic molecular systems, capable to respond to external stimuli, with 2DMs makes it possible to generate hybrid systems possessing new properties by realizing stimuli-responsive functional devices and thereby enabling functional diversification in More-than-Moore technologies. In this review, we first introduce emerging 2DMs, various classes of (macro)molecules, and molecular switches and discuss their relevant properties. We then turn to 2DM/molecule hybrid systems and the various physical and chemical strategies used to synthesize them. Next, we discuss the use of molecules and assemblies thereof to boost the performance of 2D transistors for CMOS applications and to impart diverse functionalities in beyond-CMOS devices. Finally, we present the challenges, opportunities, and long-term perspectives in this technologically promising field.

摘要

在过去二十年中,二维材料(2DMs)引起了极大的研究兴趣。它们独特的光学、电子、热学和力学性能使二维材料成为制造新型互补金属氧化物半导体(CMOS)及超越CMOS器件的关键构建块。通过二维材料与分子的共价或非共价功能化,器件的功能和性能取得了重大进展:金属电极和电介质的分子涂层允许更有效地通过二维材料进行电荷注入和传输,而能够响应外部刺激的动态分子系统与二维材料的结合,使得通过实现刺激响应功能器件来生成具有新特性的混合系统成为可能,从而在超越摩尔技术中实现功能多样化。在本综述中,我们首先介绍新兴的二维材料、各类(宏观)分子和分子开关,并讨论它们的相关特性。然后我们转向二维材料/分子混合系统以及用于合成它们的各种物理和化学策略。接下来,我们讨论使用分子及其组装体来提高用于CMOS应用的二维晶体管的性能,并在超越CMOS器件中赋予其多种功能。最后,我们介绍了这个具有技术前景的领域中的挑战、机遇和长期展望。

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