Synergistic bandgap and heterojunction engineering in YbSnO thin films for high-performance self-powered solar-blind photodetection
Abstract
Exploring semiconductor materials with suitable bandgaps and chemical stability is crucial for constructing solar-blind ultraviolet (SBUV) photodetectors with high stability, high responsivity, and high detectivity. However, the scarcity of suitable material systems has significantly hindered further breakthroughs in device performance. Rare-earth oxide Yb2O3, with its wide intrinsic bandgap (∼4.9 eV) and high dielectric constant, is theoretically promising for SBUV detection. Nevertheless, its practical application has been limited by an excessively large bandgap and poor electrical conductivity. Herein, we propose a synergistic strategy combining bandgap engineering and a double heterojunction design to fabricate a p-Gr/i-YbSnO/n-SiC photovoltaic-type SBUV photodetector. The active YbSnO film was realized by co-sputtering SnO2 into Yb2O3, which effectively narrows the bandgap to 4.42 eV and redshifts the absorption onset to 280 nm. By integrating monolayer graphene (Gr) as a transparent top electrode, a p-Gr/i-YbSnO/n-SiC double heterojunction was constructed. Leveraging the dual built-in electric fields, the device achieves remarkable self-powered performance under 255 nm illumination: an open-circuit voltage of 0.33 V, a responsivity of 18.41 mA/W, an external quantum efficiency of 8.96%, and a high specific detectivity of 2.31 × 1012 Jones, along with a rejection ratio (R255 nm/R340 nm) of 282. This work achieves precise bandgap control of rare earth oxide, significantly optimizes the device performance of Yb2O3-based semiconductors for SBUV detection, and provides key technical support for the practical application of such materials in miniaturized and integrated optoelectronic chips.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (10)
Yujie Guan
Fujian Key Laboratory of Agricultural Information Sensoring Technology, College of Mechanical and Electrical Engineering, Fujian Agriculture and Forestry University 1 , Fuzhou, Fujian 350002,
Shiya Huang
Qiuling Lai
Fujian Key Laboratory of Agricultural Information Sensoring Technology, College of Mechanical and Electrical Engineering, Fujian Agriculture and Forestry University 1 , Fuzhou, Fujian 350002,
Ziming Wu
Weixin Lin
Fujian Key Laboratory of Agricultural Information Sensoring Technology, College of Mechanical and Electrical Engineering, Fujian Agriculture and Forestry University 1 , Fuzhou, Fujian 350002,
Han Zhao
Yumin Liu
Xiong Chen
State Key Laboratory of Chemistry for NBC Hazards Protection, College of Chemistry
Dagui Chen
Organic Optoelectronics Engineering Research Center of Fujian's Universities, Fujian Jiangxia University 3 , Fuzhou, Fujian 350002,
Qichang Hu
Fujian Key Laboratory of Agricultural Information Sensoring Technology, College of Mechanical and Electrical Engineering, Fujian Agriculture and Forestry University 1 , Fuzhou, Fujian 350002,