Yoon Younghwa, Park Sangbin, Park Taejun, Kim Hyungmin, Kim Kyunghwan, Hong Jeongsoo
Department of Electrical Engineering, Gachon University, 1342 Seongnamdaero, Seongnam 13120, Republic of Korea.
Nanomaterials (Basel). 2023 Apr 6;13(7):1287. doi: 10.3390/nano13071287.
A Ag:AZO electrode was used as an electrode for a self-powered solar-blind ultraviolet photodetector based on a AgO/β-GaO heterojunction. The Ag:AZO electrode was fabricated by co-sputtering Ag and AZO heterogeneous targets using the structural characteristics of a Facing Targets Sputtering (FTS) system with two-facing targets, and the electrical, crystallographic, structural, and optical properties of the fabricated thin film were evaluated. A photodetector was fabricated and evaluated based on the research results that the surface roughness of the electrode can reduce the light energy loss by reducing the scattering and reflectance of incident light energy and improving the trapping phenomenon between interfaces. The thickness of the electrodes was varied from 20 nm to 50 nm depending on the sputtering time. The optoelectronic properties were measured under 254 nm UV-C light, the on/off ratio of the 20 nm Ag:AZO electrode with the lowest surface roughness was 2.01 × 10, and the responsivity and detectivity were 56 mA/W and 6.99 × 10 Jones, respectively. The AgO/β-GaO-based solar-blind photodetector with a newly fabricated top electrode exhibited improved response with self-powered characteristics.
将Ag:AZO电极用作基于AgO/β-GaO异质结的自供电日盲紫外光电探测器的电极。利用具有两面靶材的面对靶溅射(FTS)系统的结构特性,通过共溅射Ag和AZO异质靶材制备Ag:AZO电极,并对制备的薄膜的电学、晶体学、结构和光学性质进行了评估。基于电极表面粗糙度可通过减少入射光能的散射和反射以及改善界面间的俘获现象来降低光能损失这一研究结果,制备并评估了光电探测器。根据溅射时间,电极厚度在20nm至50nm之间变化。在254nm的UV-C光下测量光电性能,表面粗糙度最低的20nm Ag:AZO电极的开/关比为2.01×10,响应度和探测率分别为56mA/W和6.99×10琼斯。具有新制备的顶部电极的基于AgO/β-GaO的日盲光电探测器表现出具有自供电特性的改善响应。