Gas-mediated liquid metal printing toward large-scale 2D semiconductors and ultraviolet photodetector

Abstract A gas-mediated fabrication of centimeter-scale two-dimensional (2D) semiconductors and ultraviolet photodetector by a liquid metal-based printing was reported. Various large-scale 2D materials (Ga2O3, In2O3, SnO) were demonstrated to be directly printed at ambient air on different substrate...

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Autores principales: Qian Li, Ju Lin, Tian-Ying Liu, Xi-Yu Zhu, Wen-Hao Yao, Jing Liu
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/7bd8060375394261862568d63ac67334
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spelling oai:doaj.org-article:7bd8060375394261862568d63ac673342021-12-02T14:20:33ZGas-mediated liquid metal printing toward large-scale 2D semiconductors and ultraviolet photodetector10.1038/s41699-021-00219-y2397-7132https://doaj.org/article/7bd8060375394261862568d63ac673342021-04-01T00:00:00Zhttps://doi.org/10.1038/s41699-021-00219-yhttps://doaj.org/toc/2397-7132Abstract A gas-mediated fabrication of centimeter-scale two-dimensional (2D) semiconductors and ultraviolet photodetector by a liquid metal-based printing was reported. Various large-scale 2D materials (Ga2O3, In2O3, SnO) were demonstrated to be directly printed at ambient air on different substrates. Such printing represents a generic, fast, clean, and scalable technique to quickly manufacture 2D semiconductors. The electrical properties were explored to quantify the printed 2D films, which were somewhat deficient in previous studies. In particular, to explore and facilitate the advantages of this 2D semiconductor in functional electronic applications, strategies for realizing fully printed Ga2O3/Si heterojunction photodetector via low-temperature and low-cost processes were developed. The device exhibits excellent sensibility and rapid photoresponse times. This work offers feasible way to develop high-performance ultraviolet photodetector for mass production. It also suggests a promising direction for making large-scale 2D photoelectronic and electronic systems and is expected to be extensively useful in the coming time.Qian LiJu LinTian-Ying LiuXi-Yu ZhuWen-Hao YaoJing LiuNature PortfolioarticleMaterials of engineering and construction. Mechanics of materialsTA401-492ChemistryQD1-999ENnpj 2D Materials and Applications, Vol 5, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Materials of engineering and construction. Mechanics of materials
TA401-492
Chemistry
QD1-999
spellingShingle Materials of engineering and construction. Mechanics of materials
TA401-492
Chemistry
QD1-999
Qian Li
Ju Lin
Tian-Ying Liu
Xi-Yu Zhu
Wen-Hao Yao
Jing Liu
Gas-mediated liquid metal printing toward large-scale 2D semiconductors and ultraviolet photodetector
description Abstract A gas-mediated fabrication of centimeter-scale two-dimensional (2D) semiconductors and ultraviolet photodetector by a liquid metal-based printing was reported. Various large-scale 2D materials (Ga2O3, In2O3, SnO) were demonstrated to be directly printed at ambient air on different substrates. Such printing represents a generic, fast, clean, and scalable technique to quickly manufacture 2D semiconductors. The electrical properties were explored to quantify the printed 2D films, which were somewhat deficient in previous studies. In particular, to explore and facilitate the advantages of this 2D semiconductor in functional electronic applications, strategies for realizing fully printed Ga2O3/Si heterojunction photodetector via low-temperature and low-cost processes were developed. The device exhibits excellent sensibility and rapid photoresponse times. This work offers feasible way to develop high-performance ultraviolet photodetector for mass production. It also suggests a promising direction for making large-scale 2D photoelectronic and electronic systems and is expected to be extensively useful in the coming time.
format article
author Qian Li
Ju Lin
Tian-Ying Liu
Xi-Yu Zhu
Wen-Hao Yao
Jing Liu
author_facet Qian Li
Ju Lin
Tian-Ying Liu
Xi-Yu Zhu
Wen-Hao Yao
Jing Liu
author_sort Qian Li
title Gas-mediated liquid metal printing toward large-scale 2D semiconductors and ultraviolet photodetector
title_short Gas-mediated liquid metal printing toward large-scale 2D semiconductors and ultraviolet photodetector
title_full Gas-mediated liquid metal printing toward large-scale 2D semiconductors and ultraviolet photodetector
title_fullStr Gas-mediated liquid metal printing toward large-scale 2D semiconductors and ultraviolet photodetector
title_full_unstemmed Gas-mediated liquid metal printing toward large-scale 2D semiconductors and ultraviolet photodetector
title_sort gas-mediated liquid metal printing toward large-scale 2d semiconductors and ultraviolet photodetector
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/7bd8060375394261862568d63ac67334
work_keys_str_mv AT qianli gasmediatedliquidmetalprintingtowardlargescale2dsemiconductorsandultravioletphotodetector
AT julin gasmediatedliquidmetalprintingtowardlargescale2dsemiconductorsandultravioletphotodetector
AT tianyingliu gasmediatedliquidmetalprintingtowardlargescale2dsemiconductorsandultravioletphotodetector
AT xiyuzhu gasmediatedliquidmetalprintingtowardlargescale2dsemiconductorsandultravioletphotodetector
AT wenhaoyao gasmediatedliquidmetalprintingtowardlargescale2dsemiconductorsandultravioletphotodetector
AT jingliu gasmediatedliquidmetalprintingtowardlargescale2dsemiconductorsandultravioletphotodetector
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