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◆ Science Advances2025-10-15· Photodetector

Transparent UVA photodetectors based on oxide semiconductors for real-time wearable skin protection monitoring

Yu Bin Kim, Hyoun Ji Ha, Jung Min Yun, Min Jung Choi, K.‐S. Han, Seunghwan Kim, Soohyung Park, Minsu Park, Hongseok Oh, Jae‐Young Yoo, Seong Jun Kang

原始摘要(英文原文)· Original abstract
Ultraviolet A (UVA) radiation penetrates deeply into the skin and can potentially damage skin health. Therefore, continuous monitoring of UVA exposure is essential to prevent long-term effects on skin health. For this purpose, UV light sensors should provide selective UVA detection while maintaining high optical transparency in the visible range, enabling integration into wearable and transparent electronic devices. In this study, we fabricated a photodetector optimized for UVA detection based on a fully transparent p-n junction photodiode architecture. A multijunction structure was designed using SnO 2 /ZnO as n-type oxide semiconductors and CoO x combined with defect-engineered HfO x as p-type semiconductors, with ITO serving as the cathode. The photodiode exhibited excellent photoresponse in the 340 to 350 nm wavelength range, with an average visible transmittance of ~75% and a responsivity of 80.1 mA W −1 . Furthermore, the device enables real-time UVA monitoring under sunlight, demonstrating strong potential for applications in wearable UVA sensing and skin protection health care systems.
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Transparent UVA photodetectors based on oxide semiconductors for real-time wearable skin protection monitoring — 科研速览 Science Skim