Cleaning of oil fouling with water enabled by Zwitterionic polyelectrolyte coatings: Overcoming the Imperative Challenge of Oil–Water Separation Membranes K He, H Duan, GY Chen, X Liu, W Yang, D and Wang ACS Nano 9 (9), 9188-9198, 2015 | 311 | 2015 |
Photothermal materials: A key platform enabling highly efficient water evaporation driven by solar energy X Wu, GY Chen, G Owens, D Chu, H Xu Materials Today Energy 12, 277-296, 2019 | 308 | 2019 |
Optical Fiber Sensors: Advanced Techniques and Applications G Rajan CRC press, 2015 | 280 | 2015 |
Same materials, bigger output: a reversibly transformable 2D-3D photothermal evaporator for highly efficient solar steam generation Y Wang, X Wu, T Gao, Y Lu, X Yang, GY Chen, G Owens, H Xu Nano Energy 79, 2020 | 261 | 2020 |
A Plant-transpiration-process-inspired strategy for highly efficient solar evaporation W Xuan, GY Chen, W Zhang, X Liu, H Xu Advanced Sustainable Systems, 2017 | 253 | 2017 |
Stackable nickel-cobalt@polydopamine nanosheet based photothermal sponges for highly efficient solar steam generation B Shao, Y Wang, X Wu, GY Chen, G Owens, H Xu Journal of Materials Chemistry A, 2020 | 196 | 2020 |
Evaporation above a bulk water surface using an oil Lamp inspired highly efficient solar-steam generation strategy X Wu, L Wu, J Tan, GY Chen, G Owens, H and Xu Journal of Materials Chemistry A, 2018 | 169 | 2018 |
A review of microfiber and nanofiber based optical sensors GY Chen, M Ding, T Newson, G Brambilla The Open Optics Journal 7 (1), 2013 | 119 | 2013 |
Substrate-Independent, Transparent Oil- Repellent Coatings with Self-Healing and Persistent Easy-Sliding Oil Repellency L Yu, GY Chen, H Xu, X Liu ACS Nano 10 (1), 1073-1085, 2016 | 112 | 2016 |
Highly Transparent and Self‐Healable Solar Thermal Anti‐/Deicing Surfaces: When Ultrathin MXene Multilayers Marry a Solid Slippery Self‐Cleaning Coating W Niu, GY Chen, H Xu, X Liu, J Sun Advanced Materials 34 (10), 2108232, 2022 | 106 | 2022 |
Self-corrected chip-based dual-comb spectrometer NB Hébert, J Genest, JD Deschênes, H Bergeron, GY Chen, C Khurmi, ... Optics Express 25 (17), 8168-8179, 2017 | 106 | 2017 |
Screening of endocrine disrupting potential of surface waters via an affinity-based biosensor in a rural community in the yellow river basin, China J Tan, L Liu, F Li, Z Chen, GY Chen, F Fang, J Guo, M He, X Zhou Environmental Science & Technology, 2022 | 91 | 2022 |
Ultrafast colorimetric humidity-sensitive polyelectrolyte coating for touchless control L Yu, H Xu, TM Monro, DG Lancaster, Y Xie, H Zeng, GY Chen*, X Liu* Materials Horizons 4 (1), 72-82, 2017 | 57 | 2017 |
Review of Optical Humidity Sensors X Rao, L Zhao, L Xu, Y Wang, K Liu, Y Wang, GY Chen, T Liu, Y Wang Sensors 21 (23), 8049, 2021 | 54 | 2021 |
Mechanically Strong and Highly Stiff Supramolecular Polymer Composites Repairable at Ambient Conditions J Zhu, GY Chen, L Yu, H Xu, X Liu, J Sun CCS Chemistry, 2020 | 46 | 2020 |
An AuNPs/mesoporous NiO/nickel foam nanocomposite as a miniaturized electrode for heavy metal detection in groundwater B Xue, Q Yang, K Xia, Z Li, GY Chen, D Zhang, X Zhou Engineering, 2022 | 39 | 2022 |
Theoretical and experimental demonstrations of a microfiber-based flexural disc accelerometer GY Chen, XL Zhang, G Brambilla, TP Newson Optics letters 36 (18), 3669-3671, 2011 | 39 | 2011 |
Femtosecond-laser-written Microstructured Waveguides in BK7 Glass GY Chen, F Piantedosi, D Otten, YQ Kang, WQ Zhang, X Zhou, TM Monro, ... Scientific Reports 8, 10377, 2018 | 38 | 2018 |
Ultra-fast hygrometer based on U-shaped optical microfiber with nanoporous polyelectrolyte coating GY Chen, X Wu, YQ Kang, L Yu, TM Monro, DG Lancaster, X Liu, H Xu Scientific Reports 7, 7943, 2017 | 36 | 2017 |
Optical microfibers for fast current sensing GY Chen, TP Newson, G Brambilla Optical Fiber Technology 19 (6), 802-807, 2013 | 35 | 2013 |