The progress of fabricating the 2D materials and heterostructure devices

Authors

  • Ao Yan

DOI:

https://doi.org/10.54097/hset.v3i.759

Keywords:

Two dimensional materials, heterojunctions, exfoliation, chemical vapor deposition, semiconductor devices.

Abstract

Contemporarily, the superior performance of low-dimensional heterostructure devices has attracted extensive attention of scientists. In order to offer a clearer understanding of low-dimensional materials and heterostructure devices, this paper introduces the basic concepts of low-dimensional materials and heterostructure fabrication and arranges the devices constructed by two-dimensional heterostructure materials. Primarily, the background information of state-of-art low-dimensional materials is demonstrated. Moreover, starting from the preparation of low dimensional materials, the mainstream methods of fabricating the two-dimensional materials are discussed. Then, the fabrication methods of two-dimensional material heterostructure and the general classification of two-dimensional material heterostructure devices are summarized. Last but not least, the full text is summarized and prospected. This paper aims to provide a more specific reference and guidance for the development of two-dimensional heterostructure devices in the future.

Downloads

Download data is not yet available.

References

Novoselov, K.S., Geim, A. K., Morozov, S.V., Electric Field Effect in Atomically Thin Carbon control-insistent pang, Science 306 (5887) (2004) 666 - 669.

Wang, Q., Kalantar-Zadeh, K., Kis, A. et al., Electronics and Optoelectronics of two-dimensional transition metal dichalcogenides, Nature Nanotech 7 (2012), 699 - 712.

Mak, K., Shan, J, Photonics and Optoelectronics of 2D semiconductor transition metal dichalcogenides, Nature Photonics 10 (2016), 216 - 226.

Jinbing Cheng, Chunlan Wang, Xuming Zou, Lei Liao Recent Advances in Optoelectronic Devices Based on 2D Materials and Their Heterostructures, Advanced Optical Materials, 7 (1) (2009), 1800441.

Zhang Xinglai, Li Jing, Yang Wenjin, Leng Bing, Niu Pingjuan, Jiang Xin, Liu Baodan, High-Performance Flexible Ultraviolet Photodetectors Based on AZO/ZnO/PVK/PEDOT: PSS Heterostructures Integrated on Human Hair, ACS applied materials & Interfaces, 11 (27) (2019) 24459 - 24467.

Gao L, Flexible device applications of 2D semiconductors, Small, 13 (35) (2017) 1603994.

Yan J B, Preparation and performance of two-dimensional chalcogenide heterojunction optoelectronic devices, Changchun university of science and technology, 2021.

Zhu Kaichen, Wen Chao, Aljarb Areej A., Xue Fei, Xu Xiangming, Tung Vincent, Zhang Xixiang, Alshareef Husam N., Lanza Mario, Development of integrated circuits based on two-dimensional materials, Nature Electronics, 201, 4 (11) (2021) 775 - 785.

Cheng Chang, Wei Chen, Ye Chen, et al., Recent Progress on Two-Dimensional Materials, Acta Phys. -Chim. Sin., 37 (12) (2021) 2108017.

Akinwande Deji, Huyghebaert Cedric, Wang Ching-Hua, Serna Martha I, Goossens Stijn, Li Lain-Jong, Wong H-S, Philip Koppens, Graphene and its application to silicon technology, Journal of materials science and technology, 573(7775) (2019) 511-518.

Gibertini, M. Koperski, M., Morpurgo, A. F. et al., 2D Magnetic materials and heterostructures. Nat. Nanotechnol. 14408 - 419 (2019).

Farag A A M, Elkanzi N A A, Ammar A H, et al., Performance and photoresponse characterizations of pyrimidine quinolone carboxylate derivatives films-based heterojunction devices, Optik, 231(2021) 166426.

Yu L P, Bati A S R, Grace T S L, et al., Ti3C2Tx (MXene)-Silicon Heterojunction for Efficient Photovoltaic Cells, Advanced Energy Materials, 9 (31) (2019) 1901063.

You D, Xu C, Qin F, et al., Interface control for pure ultraviolet electroluminescence from nano-ZnO-based heterojunction devices, Science Bulletin, 63 (1) (2018) 38 - 45.

Huang Y, Sutter E, Shi N N, et al., Reliable exfoliation of large-area high-quality flakes of graphene and other Two-dimensional materials, Journal of ACS Nano, 9 (2015)10612-10620.

Nicolosi V., Chhowalla M., Kanatzidis M. G., Strano M. S., Coleman J. N., Liquid Exfoliation of Layered Materials, Journal of Materials Science and engineering, 340 (6139) (2013) 72 - 75.

Nguyen T P, Van Le Q, Choi K S, et al., Foliation of MoS2 nanosheets by sonication and its application in photovoltaic cells, Sci Adv Mater, 7 (4) (2015) 700 - 705.

Chen W, Sun L, Li Q, et al., Defect-rich MoS2/r-GO hybrid via microwave-assisted solvothermal process for efficient electrocatalytic hydrogen evolution, International Journal of Hydrogen Energy, 45 (43) (2020) 22459 - 22468.

Zhang X, Tian L, Diao D, High-response heterojunction phototransistor based on vertically grown graphene nanosheets film, Carbon, 172 (2021) 720 - 728.

Zhou J, Kong X, Sekhar M C, et al., Epitaxial synthesis of monolayer PtSe2 single crystal on MoSe2 with strong interlayer coupling, ACS nano, 3 (10) (2019) 10929 - 10938.

Li, J., Yang, X., Liu, General synthesis of two-dimensional van der Waals heterostructure, Nature 579 (2020) 368 - 374.

Zhang Rui, Yu Xiaopeng, Cheng Ran, Shen Qiang, Geng Hongyan, Gao Dawei, Wu Hanming, Recent progresses on advanced VLSI manufacturing techniques, Frontiers of Data & Computing, 3 (05) (2021) 28 - 39.

Genwang Wang, Chaojian Hou, Haotian Long, Lijun Yang, Yang Wang, Electronic and Optoelectronic Nanodevices Based on Two-Dimensional Semiconductor Materials, Acta Physico-Chimica Sinica, 35 (12) (2019) 1319 - 1340.

Cheng R, Wang F, Yin L, et al., High-performance, multifunctional devices based on asymmetric van der Waals Heterostructures, Nature Electronics, 1 (2018) 356 - 361.

Jin H, Chen Y, Zhang L, et al., Positive and negative photoconductivity characteristics in CsPbBr3/Graphene hetero-junction, Nanotechnology, 32 (8) (2021) 085202.

Liu Y, Zeng C, Zhong J, et al., Spintronics in two-dimensional materials, Nano-Micro Letters 12 (1) (2020) 1 - 26.

Khan Y, Obaidulla S M, Habib M R, et al., Recent breakthroughs in two-dimensional van der Waals magnetic materials and emerging applications, Nano Today, 34 (2020) 100902.

Gong C, Zhang X., Two-dimensional magnetic crystals and emergent heterostructure devices, Science, 363 (6428) (2019) eaav4450.

Gurram, M., Omar, S. and van Wees, B. J, Bias induced up to 100% spin-injection and detection polarizations in ferromagnet/bilayer-hBN/graphene/hBN heterostructures, Nat. Commun. 8, (2017) 248.

Li Ming-Yang, Su Sheng-Kai,Wong H-S Philip, Li Lain-Jong, How 2D semiconductors could extend Moore's law, Nature, 567 (7747) (2019) 169 - 170.

Downloads

Published

08-07-2022

How to Cite

Yan, A. (2022). The progress of fabricating the 2D materials and heterostructure devices. Highlights in Science, Engineering and Technology, 3, 230-237. https://doi.org/10.54097/hset.v3i.759