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Toward Large-Scale Ga2O3 Membranes via Quasi-Van Der Waals Epitaxy on Epitaxial Graphene Layers.


ABSTRACT: Epitaxial growth using graphene (GR), weakly bonded by van der Waals force, is a subject of interest for fabricating technologically important semiconductor membranes. Such membranes can potentially offer effective cooling and dimensional scale-down for high voltage power devices and deep ultraviolet optoelectronics at a fraction of the bulk-device cost. Here, we report on a large-area β-Ga2O3 nanomembrane spontaneous-exfoliation (1 cm × 1 cm) from layers of compressive-strained epitaxial graphene (EG) grown on SiC, and demonstrated high-responsivity flexible solar-blind photodetectors. The EG was favorably influenced by lattice arrangement of SiC, and thus enabled β-Ga2O3 direct-epitaxy on the EG. The β-Ga2O3 layer was spontaneously exfoliated at the interface of GR owing to its low interfacial toughness by controlling the energy release rate through electroplated Ni layers. The use of GR templates contributes to the seamless exfoliation of the nanomembranes, and the technique is relevant to eventual nanomembrane-based integrated device technology.

SUBMITTER: Min JH 

PROVIDER: S-EPMC8041250 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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Toward Large-Scale Ga<sub>2</sub>O<sub>3</sub> Membranes via Quasi-Van Der Waals Epitaxy on Epitaxial Graphene Layers.

Min Jung-Hong JH   Li Kuang-Hui KH   Kim Yong-Hyeon YH   Min Jung-Wook JW   Kang Chun Hong CH   Kim Kyoung-Ho KH   Lee Jae-Seong JS   Lee Kwang Jae KJ   Jeong Seong-Min SM   Lee Dong-Seon DS   Bae Si-Young SY   Ng Tien Khee TK   Ooi Boon S BS  

ACS applied materials & interfaces 20210312 11


Epitaxial growth using graphene (GR), weakly bonded by van der Waals force, is a subject of interest for fabricating technologically important semiconductor membranes. Such membranes can potentially offer effective cooling and dimensional scale-down for high voltage power devices and deep ultraviolet optoelectronics at a fraction of the bulk-device cost. Here, we report on a large-area β-Ga<sub>2</sub>O<sub>3</sub> nanomembrane spontaneous-exfoliation (1 cm × 1 cm) from layers of compressive-str  ...[more]

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