Jingjing Fu
Affiliations: | 2018- | The Chinese University of Hong Kong, Hong Kong, Hong Kong |
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Publications
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Xu G, Wang H, Zhao G, et al. (2025) Self-powered electrotactile textile haptic glove for enhanced human-machine interface. Science Advances. 11: eadt0318 |
Chen C, Zhang H, Xu G, et al. (2023) Passive Internet of Events Enabled by Broadly Compatible Self-Powered Visualized Platform Toward Real-Time Surveillance. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). e2304352 |
Xu G, Fu J, Li C, et al. (2022) Understanding the Time-Lag Behavior of the Breakdown-Discharge Voltage. Acs Applied Materials & Interfaces |
Xu G, Guan D, Fu J, et al. (2022) Density of Surface States: Another Key Contributing Factor in Triboelectric Charge Generation. Acs Applied Materials & Interfaces |
Wang H, Wang J, Yao K, et al. (2021) A paradigm shift fully self-powered long-distance wireless sensing solution enabled by discharge-induced displacement current. Science Advances. 7: eabi6751 |
Fu J, Xu G, Li C, et al. (2020) Achieving Ultrahigh Output Energy Density of Triboelectric Nanogenerators in High-Pressure Gas Environment. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). 7: 2001757 |
Fu J, Xia X, Xu G, et al. (2019) On the Maximal Output Energy Density of Nanogenerators. Acs Nano |
Xia X, Fu J, Zi Y. (2019) A universal standardized method for output capability assessment of nanogenerators. Nature Communications. 10: 4428 |
Xu G, Li X, Xia X, et al. (2019) On the force and energy conversion in triboelectric nanogenerators Nano Energy. 59: 154-161 |
Wang H, Zhu Q, Ding Z, et al. (2019) A fully-packaged ship-shaped hybrid nanogenerator for blue energy harvesting toward seawater self-desalination and self-powered positioning Nano Energy. 57: 616-624 |