光电探测器
光电子学
极性(国际关系)
光电流
异质结
材料科学
光电导性
光功率
肖特基势垒
加密
调制(音乐)
肖特基二极管
逻辑门
光强度
光通信
功率(物理)
和大门
NOR门
光电二极管
物理
纳米电子学
作者
YuHang Li,Jie Tang,Yang Li,Xiaoqing Gao,Yuanqiang Xiong
摘要
Bipolar photodetectors are promising for optical logic and communication but often suffer from structural complexity and high power consumption. Here, we report a self-powered, vertical photodetector based on an ITO/Au NPs/a-Ga2O3/Pt heterojunction. By leveraging Au nanoparticles to engineer interfacial oxygen vacancies and the synergistic modulation of the Schottky barrier by the light field, the device achieves a distinct bidirectional photoresponse at zero bias. Specifically, it exhibits wavelength-dependent polarity switching, generating positive photocurrent at 254 nm and negative at 310 nm. Notably, under 295 nm illumination, the device displays an anomalous intensity-dependent polarity reversal, transitioning from negative to positive as light intensity increases. We demonstrate the potential of these tunable features in optical logic gates and encrypted communication systems, offering a new pathway for multifunctional self-powered optoelectronics.
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