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Defect‐Polarization Coupling in 3D‐Graphene/ β ‐Ga 2 O 3 Heterostructures for Self‐Powered and Multifunctional Solar‐Blind Ultraviolet Photodetection

光探测 材料科学 响应度 光电探测器 光电子学 紫外线 光电导性 异质结 极化(电化学) 光电二极管 偶极子 氧气 紫外线 红外线的 纳米线 氮化镓 光电流 氧化物 光功率 联轴节(管道) 覆盖层
作者
Fanghao Zhu,Yuanyuan Wang,Z L Li,Genqiang Cao,Hui Ma,Kuan Qian,Shubo Li,Junhua Zhang,Shanshui Lian,Liu Zheng,Peng He,Y ZHAO,Miao Gao,Wen Wu Xu,Xu Wang,Gang Wang
出处
期刊:Small [Wiley]
卷期号:22 (47): e74530-e74530
标识
DOI:10.1002/smll.74530
摘要

ABSTRACT Solar‐blind ultraviolet photodetectors are promising for secure communication, early warning systems, and information security. Monoclinic phase gallium oxide ( β ‐Ga 2 O 3 ) is an ideal candidate due to its ultrawide bandgap. Unavoidable oxygen vacancies in β ‐Ga 2 O 3 have been viewed as detrimental defects that degrade performance. However, this study introduces an innovative approach that reinterprets these oxygen vacancies as beneficial for optoelectronic enhancement, accomplished through a 3D‐graphene/ β ‐Ga 2 O 3 heterojunction. Oxygen vacancies cause localized lattice symmetry breaking, generating dipole fields and local polarization. This interacts with the optical resonance of 3D‐graphene, enhancing optical and electrical fields in the heterojunction, which improves the separation and transport of photogenerated carriers. Experimental investigations, along with DFT and TCAD calculations, reveal that oxygen‐vacancy‐induced local polarization reduces the interfacial barrier, enhances electron injection, and increases photoconductive gain through a trap‐assisted mechanism. The photodetector achieves weak‐light detection at 255 nm (0.002 µW/mm 2 ) with a responsivity of 3740 A/W and specific detectivity of 6.85 × 10 13 Jones, a response of 140 µs, and enabling zero‐bias self‐powered operation. The 8 × 8 array allows for ultraviolet imaging and optical encrypted communication. This study reframes oxygen vacancies as functional mechanisms for enhancing polarization, paving the way for advanced wide‐bandgap optoelectronic device design.
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