Lattice modulation strategies for 2D material assisted epitaxial growth

Abstract As an emerging single crystals growth technique, the 2D-material-assisted epitaxy shows excellent advantages in flexible and transferable structure fabrication, dissimilar materials integration, and matter assembly, which offers opportunities for novel optoelectronics and electronics develo...

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Main Authors: Qi Chen, Kailai Yang, Meng Liang, Junjie Kang, Xiaoyan Yi, Junxi Wang, Jinmin Li, Zhiqiang Liu
Format: Article
Language:English
Published: SpringerOpen 2023-08-01
Series:Nano Convergence
Subjects:
Online Access:https://doi.org/10.1186/s40580-023-00388-0
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author Qi Chen
Kailai Yang
Meng Liang
Junjie Kang
Xiaoyan Yi
Junxi Wang
Jinmin Li
Zhiqiang Liu
author_facet Qi Chen
Kailai Yang
Meng Liang
Junjie Kang
Xiaoyan Yi
Junxi Wang
Jinmin Li
Zhiqiang Liu
author_sort Qi Chen
collection DOAJ
description Abstract As an emerging single crystals growth technique, the 2D-material-assisted epitaxy shows excellent advantages in flexible and transferable structure fabrication, dissimilar materials integration, and matter assembly, which offers opportunities for novel optoelectronics and electronics development and opens a pathway for the next-generation integrated system fabrication. Studying and understanding the lattice modulation mechanism in 2D-material-assisted epitaxy could greatly benefit its practical application and further development. In this review, we overview the tremendous experimental and theoretical findings in varied 2D-material-assisted epitaxy. The lattice guidance mechanism and corresponding epitaxial relationship construction strategy in remote epitaxy, van der Waals epitaxy, and quasi van der Waals epitaxy are discussed, respectively. Besides, the possible application scenarios and future development directions of 2D-material-assisted epitaxy are also given. We believe the discussions and perspectives exhibited here could help to provide insight into the essence of the 2D-material-assisted epitaxy and motivate novel structure design and offer solutions to heterogeneous integration via the 2D-material-assisted epitaxy method. Graphical Abstract
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spelling doaj.art-8ce2c2858e7942dca743dfe2c8dfdb8a2023-11-26T13:58:46ZengSpringerOpenNano Convergence2196-54042023-08-0110111610.1186/s40580-023-00388-0Lattice modulation strategies for 2D material assisted epitaxial growthQi Chen0Kailai Yang1Meng Liang2Junjie Kang3Xiaoyan Yi4Junxi Wang5Jinmin Li6Zhiqiang Liu7Research and Development Center for Semiconductor Lighting Technology, Institute of Semiconductors, Chinese Academy of SciencesResearch and Development Center for Semiconductor Lighting Technology, Institute of Semiconductors, Chinese Academy of SciencesResearch and Development Center for Semiconductor Lighting Technology, Institute of Semiconductors, Chinese Academy of SciencesResearch and Development Center for Semiconductor Lighting Technology, Institute of Semiconductors, Chinese Academy of SciencesResearch and Development Center for Semiconductor Lighting Technology, Institute of Semiconductors, Chinese Academy of SciencesResearch and Development Center for Semiconductor Lighting Technology, Institute of Semiconductors, Chinese Academy of SciencesResearch and Development Center for Semiconductor Lighting Technology, Institute of Semiconductors, Chinese Academy of SciencesResearch and Development Center for Semiconductor Lighting Technology, Institute of Semiconductors, Chinese Academy of SciencesAbstract As an emerging single crystals growth technique, the 2D-material-assisted epitaxy shows excellent advantages in flexible and transferable structure fabrication, dissimilar materials integration, and matter assembly, which offers opportunities for novel optoelectronics and electronics development and opens a pathway for the next-generation integrated system fabrication. Studying and understanding the lattice modulation mechanism in 2D-material-assisted epitaxy could greatly benefit its practical application and further development. In this review, we overview the tremendous experimental and theoretical findings in varied 2D-material-assisted epitaxy. The lattice guidance mechanism and corresponding epitaxial relationship construction strategy in remote epitaxy, van der Waals epitaxy, and quasi van der Waals epitaxy are discussed, respectively. Besides, the possible application scenarios and future development directions of 2D-material-assisted epitaxy are also given. We believe the discussions and perspectives exhibited here could help to provide insight into the essence of the 2D-material-assisted epitaxy and motivate novel structure design and offer solutions to heterogeneous integration via the 2D-material-assisted epitaxy method. Graphical Abstracthttps://doi.org/10.1186/s40580-023-00388-0Remote epitaxyvdW epitaxy2D material
spellingShingle Qi Chen
Kailai Yang
Meng Liang
Junjie Kang
Xiaoyan Yi
Junxi Wang
Jinmin Li
Zhiqiang Liu
Lattice modulation strategies for 2D material assisted epitaxial growth
Nano Convergence
Remote epitaxy
vdW epitaxy
2D material
title Lattice modulation strategies for 2D material assisted epitaxial growth
title_full Lattice modulation strategies for 2D material assisted epitaxial growth
title_fullStr Lattice modulation strategies for 2D material assisted epitaxial growth
title_full_unstemmed Lattice modulation strategies for 2D material assisted epitaxial growth
title_short Lattice modulation strategies for 2D material assisted epitaxial growth
title_sort lattice modulation strategies for 2d material assisted epitaxial growth
topic Remote epitaxy
vdW epitaxy
2D material
url https://doi.org/10.1186/s40580-023-00388-0
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