4.8 Article

Piezo-phototronic effect regulated broadband photoresponse of a-Ga2O3/ZnO heterojunction

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NANOSCALE
卷 15, 期 15, 页码 7068-7076

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d3nr00744h

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In this study, a flexible a-Ga2O3/ZnO heterojunction was fabricated, which exhibited a broadband photoresponse from deep ultraviolet to near-infrared and adjustable photocurrent response through the piezo-phototronic effect. The responsivity and detectivity of the heterojunction reached up to 12.19 A W-1 and 4.71 x 10(11) Jones, respectively, under a compressive strain of 0.164%, showing enhancements of 67.7% and 66.8% compared to the strain-free state. Furthermore, the heterojunction demonstrated tunable broadband photoresponse beyond the bandgap limit under bidirectional strain. The findings provide insights for the development of adjustable broadband photodetectors based on a-Ga2O3 films.
Amorphous Ga2O3 (a-Ga2O3) films have attracted considerable attention in the field of photodetectors due to their excellent optical absorption response and photoelectric properties. However, there are few studies that have utilized the piezo-phototronic effect to regulate the broadband photoresponse of Ga2O3-based photodetectors. Here, a flexible a-Ga2O3/ZnO heterojunction was constructed, which demonstrated a broadband response range from deep ultraviolet (265 nm) to the near-infrared (1060 nm) and realized a bidirectional adjustable photocurrent response via the piezo-phototronic effect. Under 265 nm illumination and 0.5 V bias, the responsivity and detectivity of the a-Ga2O3/ZnO heterojunction reached up to 12.19 A W-1 and 4.71 x 10(11) Jones under 0.164% compressive strain, corresponding to enhancements of 67.7% and 66.8% compared to those under a strain-free state, respectively. Moreover, the broadband photoresponse of the a-Ga2O3/ZnO heterojunction beyond the bandgap limit was tunable under bidirectional strain. The working mechanism of photoresponse performance for the a-Ga2O3/ZnO heterojunction at different wavelengths was elucidated in detail. Oxygen vacancy-assisted carrier generation was found to be influenced by the wavelength of incident light, which mainly determined the broadband photoresponse of the heterojunction. The modulation of the a-Ga2O3/ZnO heterojunction photodetector was interpreted in light of the strain-induced regulation of the barrier height. This work represents an important step toward the development of adjustable broadband photodetectors based on a-Ga2O3 films.

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