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Transferable Ga(2)O(3) Membrane for Vertical and Flexible Electronics via One-Step Exfoliation

[Image: see text] Transferable Ga(2)O(3) thin film membrane is desirable for vertical and flexible solar-blind photonics and high-power electronics applications. However, Ga(2)O(3) epitaxially grown on rigid substrates such as sapphire, Si, and SiC hinders its exfoliation due to the strong covalent...

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Autores principales: Lu, Yi, Krishna, Shibin, Liao, Che-Hao, Yang, Ziqiang, Kumar, Mritunjay, Liu, Zhiyuan, Tang, Xiao, Xiao, Na, Hassine, Mohamed Ben, Thoroddsen, Sigurdur T., Li, Xiaohang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9614724/
https://www.ncbi.nlm.nih.gov/pubmed/36241169
http://dx.doi.org/10.1021/acsami.2c14661
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author Lu, Yi
Krishna, Shibin
Liao, Che-Hao
Yang, Ziqiang
Kumar, Mritunjay
Liu, Zhiyuan
Tang, Xiao
Xiao, Na
Hassine, Mohamed Ben
Thoroddsen, Sigurdur T.
Li, Xiaohang
author_facet Lu, Yi
Krishna, Shibin
Liao, Che-Hao
Yang, Ziqiang
Kumar, Mritunjay
Liu, Zhiyuan
Tang, Xiao
Xiao, Na
Hassine, Mohamed Ben
Thoroddsen, Sigurdur T.
Li, Xiaohang
author_sort Lu, Yi
collection PubMed
description [Image: see text] Transferable Ga(2)O(3) thin film membrane is desirable for vertical and flexible solar-blind photonics and high-power electronics applications. However, Ga(2)O(3) epitaxially grown on rigid substrates such as sapphire, Si, and SiC hinders its exfoliation due to the strong covalent bond between Ga(2)O(3) and substrates, determining its lateral device configuration and also hardly reaching the ever-increasing demand for wearable and foldable applications. Mica substrate, which has an atomic-level flat surface and high-temperature tolerance, could be a good candidate for the van der Waals (vdW) epitaxy of crystalline Ga(2)O(3) membrane. Beyond that, benefiting from the weak vdW bond between Ga(2)O(3) and mica substrate, in this work, the Ga(2)O(3) membrane is exfoliated and transferred to arbitrary flexible and adhesive tape, allowing for the vertical and flexible electronic configuration. This straightforward exfoliation method is verified to be consistent and reproducible by the transfer and characterization of thick (∼380 nm)/thin (∼95 nm) κ-phase Ga(2)O(3) and conductive n-type β-Ga(2)O(3). Vertical photodetectors are fabricated based on the exfoliated Ga(2)O(3) membrane, denoting the peak response at ∼250 nm. Through the integration of Ti/Au Ohmic contact and Ni/Ag Schottky contact electrode, the vertical photodetector exhibits self-powered photodetection behavior with a responsivity of 17 mA/W under zero bias. The vdW-bond-assisted exfoliation of the Ga(2)O(3) membrane demonstrated here could provide enormous opportunities in the pursuit of vertical and flexible Ga(2)O(3) electronics.
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spelling pubmed-96147242022-10-29 Transferable Ga(2)O(3) Membrane for Vertical and Flexible Electronics via One-Step Exfoliation Lu, Yi Krishna, Shibin Liao, Che-Hao Yang, Ziqiang Kumar, Mritunjay Liu, Zhiyuan Tang, Xiao Xiao, Na Hassine, Mohamed Ben Thoroddsen, Sigurdur T. Li, Xiaohang ACS Appl Mater Interfaces [Image: see text] Transferable Ga(2)O(3) thin film membrane is desirable for vertical and flexible solar-blind photonics and high-power electronics applications. However, Ga(2)O(3) epitaxially grown on rigid substrates such as sapphire, Si, and SiC hinders its exfoliation due to the strong covalent bond between Ga(2)O(3) and substrates, determining its lateral device configuration and also hardly reaching the ever-increasing demand for wearable and foldable applications. Mica substrate, which has an atomic-level flat surface and high-temperature tolerance, could be a good candidate for the van der Waals (vdW) epitaxy of crystalline Ga(2)O(3) membrane. Beyond that, benefiting from the weak vdW bond between Ga(2)O(3) and mica substrate, in this work, the Ga(2)O(3) membrane is exfoliated and transferred to arbitrary flexible and adhesive tape, allowing for the vertical and flexible electronic configuration. This straightforward exfoliation method is verified to be consistent and reproducible by the transfer and characterization of thick (∼380 nm)/thin (∼95 nm) κ-phase Ga(2)O(3) and conductive n-type β-Ga(2)O(3). Vertical photodetectors are fabricated based on the exfoliated Ga(2)O(3) membrane, denoting the peak response at ∼250 nm. Through the integration of Ti/Au Ohmic contact and Ni/Ag Schottky contact electrode, the vertical photodetector exhibits self-powered photodetection behavior with a responsivity of 17 mA/W under zero bias. The vdW-bond-assisted exfoliation of the Ga(2)O(3) membrane demonstrated here could provide enormous opportunities in the pursuit of vertical and flexible Ga(2)O(3) electronics. American Chemical Society 2022-10-14 2022-10-26 /pmc/articles/PMC9614724/ /pubmed/36241169 http://dx.doi.org/10.1021/acsami.2c14661 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Lu, Yi
Krishna, Shibin
Liao, Che-Hao
Yang, Ziqiang
Kumar, Mritunjay
Liu, Zhiyuan
Tang, Xiao
Xiao, Na
Hassine, Mohamed Ben
Thoroddsen, Sigurdur T.
Li, Xiaohang
Transferable Ga(2)O(3) Membrane for Vertical and Flexible Electronics via One-Step Exfoliation
title Transferable Ga(2)O(3) Membrane for Vertical and Flexible Electronics via One-Step Exfoliation
title_full Transferable Ga(2)O(3) Membrane for Vertical and Flexible Electronics via One-Step Exfoliation
title_fullStr Transferable Ga(2)O(3) Membrane for Vertical and Flexible Electronics via One-Step Exfoliation
title_full_unstemmed Transferable Ga(2)O(3) Membrane for Vertical and Flexible Electronics via One-Step Exfoliation
title_short Transferable Ga(2)O(3) Membrane for Vertical and Flexible Electronics via One-Step Exfoliation
title_sort transferable ga(2)o(3) membrane for vertical and flexible electronics via one-step exfoliation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9614724/
https://www.ncbi.nlm.nih.gov/pubmed/36241169
http://dx.doi.org/10.1021/acsami.2c14661
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