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Wafer-scale synthesis of twodimensional materials for integrated electronics

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摘要 Two-dimensional(2D)van derWaals materials have attracted great interest and facilitated the development of post-Moore electronics owing to their novel physical properties and high compatibility with traditional microfabrication techniques.Their wafer-scale synthesis has become a critical challenge for large-scale integrated applications.Although the wafer-scale synthesis approaches for some 2D materials have been extensively explored,the preparation of high-quality thin films with well-controlled thickness remains a big challenge.This review focuses on the wafer-scale synthesis of 2D materials and their applications in integrated electronics.Firstly,several representative 2D layered materials including their crystal structures and unique electronic properties were introduced.Then,the current synthesis strategies of 2Dlayeredmaterials at thewafer scale,which are divided into“top-down”and“bottom-up”,were reviewed in depth.Afterwards,the applications of 2D materials wafer in integrated electrical and optoelectronic devices were discussed.Finally,the current challenges and future prospects for 2D integrated electronics were presented.It is hoped that this reviewwill provide comprehensive and insightful guidance for the development of wafer-scale 2D materials and their integrated applications.
出处 《Chip》 EI 2024年第1期64-83,共20页 芯片(英文)
基金 supported by National Natural Science Foundation of China(Nos.91964203,62274121,and 62104171) Wuhan Science and Technology Major Program(No.2022013702025186) R.C.also acknowledges support from the Young Elite Scientists Sponsorship Program by CAST(No.2022QNRC001).
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