Photovoltaic-powered batteries offer a promising integrated solution for sustainable energy in portable electronics, yet conventional designs face challenges in integration, miniaturization, and flexibility. We address this through a dual-functional, material-sharing strategy using ethyl viologen diiodide to achieve synergistic performance enhancement in photovoltaic-powered batteries. The ethyl viologen diiodide-modified perovskite solar cells exhibit 26.11% efficiency and retain 96.2% of their original performance after 1000âh of continuous use. Batteries employing ethyl viologen diiodide-derived perovskitoid cathodes show 296.1âmAhâg(-1) at 0.5âAâg(-1), with a capacity retention of 89% after 10,000 cycles at 5âAâg(-1). The resulting all-perovskite-based integrated devices show an overall energy conversion efficiency of 18.54%, with flexible versions achieving 17.62% efficiency and stable photo-charging/discharging cyclability over 100 cycles. These flexible devices reliably power a wearable glucose monitor in intelligent control mode for 24âh, demonstrating their potential for next-generation portable electronics applications.
Highly efficient all-perovskite photovoltaic-powered battery with dual-function viologen for portable electronics.
用于便携式电子产品的高效全钙钛矿光伏电池,带有双功能紫精
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作者:Gong Jie, Gao Danpeng, Zhang Hang, Liang Xiongyi, Li Bo, Liu Qi, Qian Liangchen, Li Xintong, Wu Xin, Zhang Chunlei, Yu Zexin, Vanin Francesco, Zeng Xiao Cheng, Li Nan, Xu Jijian, Zhi Chunyi, Zhu Zonglong
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Aug 27; 16(1):7980 |
| doi: | 10.1038/s41467-025-63272-x | ||
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