A Real-Time Wearable UV-Radiation Monitor based on a High-Performance p-CuZnS/n-TiO<sub>2</sub> Photodetector.

Xu, Xiaojie; Chen, Jiaxin; Cai, Sa; Long, Zhenghao; Zhang, Yong; Su, Longxing; He, Sisi; Tang, Chengqiang et al. · Adv Mater · 2018

basic_science · Level V

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Abstract

Solar radiation, especially ultraviolet (UV) light, is a major hazard for most skin-related cancers. The growing needs for wearable health monitoring systems call for a high-performance real-time UV sensor to prevent skin diseases caused by excess UV exposure. To this end, here a novel self-powered p-CuZnS/n-TiO<sub>2</sub> UV photodetector (PD) with high performance is successfully developed (responsivity of 2.54 mA W<sup>-1</sup> at 0 V toward 300 nm). Moreover, by effectively replacing the Ti foil with a thin Ti wire for the anodization process, the conventional planar rigid device is artfully turned into a fiber-shaped flexible and wearable one. The fiber-shaped device shows an outstanding responsivity of 640 A W<sup>-1</sup> , external quantum efficiency of 2.3 × 10<sup>5</sup> %, and photocurrent of ≈4 mA at 3 V, exceeding those of most current UV PDs. Its ultrahigh photocurrent enables it to be easily integrated with commercial electronics to function as a real-time monitor system. Thus, the first real-time wearable UV radiation sensor that reads out ambient UV power density and transmits data to smart phones via wifi is demonstrated. This work not only presents a promising wearable health monitor, but also provides a general strategy for designing and fabricating smart wearable electronic devices.

Medical subject headings