Google Scholar: https://scholar.google.com/citations?user=QmXTkS0AAAAJ&hl=zh-CN
Selected Peer-Reviewed Publications
20. S. Gu†, Z. Wu†, S. Xu, Z. Dai, J. Zheng, A. Li, W. C. H. Choy, L. Qu, H. Dai*, and F. Wang*, “Near-Infrared II Scintillator for High-Resolution X-ray Imaging,” bioRxiv (2026/07/02,†equally contributed, DOI: https://doi.org/10.64898/2026.06.29.735208 ).
19. Z. Dai†, Z. Wu†, W.J. Li†, Sixin Xu, D. Xu, P. Xiong, Z. Liu, C. Zhang, L. Qu, L. Liu* and F. Wang*, “Real-Time Near-Infrared II Fluorescence Navigation of Magnetic Nanorobots for Image-Guided Therapy,” Science Advances, 12, eaea5126 (2026,†equally contributed).
18. D. Xu†, Z. Wu†, H. Yang, G. Chen, W.J. Li, X. Yue, G.L. Wang, S. Xu, H. Yu, Y. Liu, Z. Dai, H. Jiang, L.J. Yu*, H. Dai*, and F. Wang*, “In Vivo Calcium Imaging in the Near-Infrared II Window,” Journal of the American Chemical Society, 148, 349–359 (2026,†equally contributed).
17. Y. Jiang, T. Ren, S. Zhao, A. Baghdasaryan, X. Zhang*, X. Chen*, F. Wang* and H. Dai*, “In vivo Imaging of the Immune System,”Nature Reviews Bioengineering (2026, https://doi.org/10.1038/s44222-026-00407-9).
16. F. Wang†, I.Y.H. Wong†, H. Liu†, Z. Wu†, C.L.Y. Wong, D. Xu, D.K.K. Chan, B.T.T. Law, F.S.Y. Chan, L. Qu, S.Y.K. Law* and H. Dai*, “Guiding Esophagectomy with Intraoperative NIR-II Fluorescence Video Imaging and Rapid Computation,” Proceedings of the National Academy of Sciences, 122, e2517785122 (2025, †equally contributed).
15. Y. Jiang, M. Sanyal, N. A Hussein, A. Baghdasaryan, M. Zhang, F. Wang, F. Ren, J. Li, G. Zhu, Y. Meng, J.Z. Adamska, E. Mellins and H. Dai*, “A SARS-CoV-2 vaccine on an NIR-II/SWIR emitting nanoparticle platform,” Science Advances, 11, eadp5539 (2025).
14. F. Wang, Y. Zhong, O. Bruns,Y. Liang and H. Dai, “In vivo NIR-II fluorescence imaging for biology and medicine,” Nature Photonics, 18, 535–547, https://www.nature.com/articles/s41566-024-01391-5, (2024).
13. F. Ren†, F. Wang†, A. Baghdasaryan†, Y.Zhong, F. Salazar, Y. Li, C. Xu, R. Hsu, Y. Jiang, H. Liu, Z. Ma, J. Li, G. Zhu, K. K. Wong, R. Willis, E. Mellins, A. Wu and H. Dai, “Shortwave-infrared-light-emitting probes for the in vivo tracking of cancer vaccines and the elicited immune responses," Nature Biomedical Engineering, 8, 726–739, (2024, †equally contributed).
12. A. Baghdasaryan, H. Liu, F. Ren, R. Hsu, Y. Jiang, F. Wang, M. Zhang, L. Grigoryan, H. Dai, “Intratumor injected gold molecular clusters for NIR-II imaging and cancer therapy,” Proceedings of the National Academy of Sciences, 121, e2318265121 (2024).
11. J. Li, Y. Kuang, X. Zhang, W.-H. Hung, C.-Y. Chiang, G. Zhu, G. Chen, F. Wang, P. Liang & H. Dai, Electrochemical acetate production from high-pressure gaseous and liquid CO2, Nature Catalysis, 6, 1151 - 1163 (2023).
10. G. Zhu, P. Liang, C. Huang, S. Wu, C. Huang, Y. Li, S. Jiang, W. Huang, J. Li, F. Wang, B. Hwang, H. Dai,"Shedding light on rechargeable Na/Cl2 battery", Proceedings of the National Academy of Sciences, 120, e2310903120 (2023).
9. F. Wang, F. Ren, Z. Ma, L. Qu, R. Gourgues, I. E. Zadeh, Y. Zhong, C. Xu, A. Baghdasaryan, J. Li, N. Los, A. Fognini, J. Qin-Dregely and H. Dai, “In vivo Non-Invasive Confocal Fluorescence Imaging Beyond 1700 nm Using Superconducting Nanowire Single-Photon Detectors,” Nature Nanotechnology, 17, 653–660 (2022).
8. F. Wang, L. Qu, F. Ren, A. Baghdasaryan, R. Hsu, P. Liang, J. Li, G. Zhu, Z. Ma and H. Dai, “High Precision Tumor Resection Down to Few-Cell Level Guided by NIR-IIb Molecular Fluorescence Imaging,” Proceedings of the National Academy of Sciences, 119, e2123111119 (2022).
7. L. Qu, Y. Zhou, P. Liang, Y. Xia, F. Wang, E. Adeli, F. Li and D. Rubin, "Rethinking architecture design for tackling data heterogeneity in federated learning", CVPR, 10061-10071 (2022) .
6. F. Wang, Z. Ma, Y. Zhong, F. Salazar, C. Xu, F. Ren, L. Qu, A. M. Wu and H. Dai, “In vivo NIR-II structured-illumination light-sheet microscopy,” Proceedings of the National Academy of Sciences, 118, e2023888118 (2021).
5. Z. Ma, F. Wang, W. Wang, Y. Zhong, and H. Dai, “Deep learning for in vivo near-infrared imaging,” Proceedings of the National Academy of Sciences, 118, e2021446118 (2021).
4. F. Wang, H. Wan, Z. Ma, Q. Sun, Y. Tian, L. Qu, H. Du, M. Zhang, L. Li, H. Ma, J. Luo, Y. Liang, W. J. Li, G. Hong, L. Liu and H. Dai, “Light-sheet microscopy in the near-infrared II window,” Nature Methods, 16, 545-552 (2019).
3. Y. Zhong†, Z. Ma†, F. Wang†, X. Wang, Y. Yang, Y. Liu, X. Zhao, J. Li, H. Du, M. Zhang, Q. Cui, S. Zhu, Q. Sun, H. Wan, Y. Tian, Q. Liu, W. Wang, K. C. Garcia and H. Dai, “In vivo molecular imaging for immunotherapy using ultra-bright near-infrared-IIb rare-earth nanoparticles,” Nature Biotechnology, 37, 1322-1331 (2019, †equally contributed).
2. M. Zhang, J. Yue, R. Cui, Z. Ma, H. Wan, F. Wang, S. Zhu, Y. Zhou, Y. Kuang, Y. Zhong, D.-W. P., H. Dai, “Bright quantum dots emitting at ∼ 1,600 nm in the NIR-IIb window for deep tissue fluorescence imaging,” Proceedings of the National Academy of Sciences, 201806153 (2018).
1. F. Wang, L. Liu, H. Yu, Y. Wen, P. Yu, Z. Liu, Y. Wang, and W. J. Li, “Scanning Superlens Microscopy for Non-invasive Large Field-of-view Visible Light Nanoscale Imaging,” Nature Communications, 7, 13748 (2016).
Peer-Reviewed Journal Articles (By Year)
2026
1. S. Gu†, Z. Wu†, S. Xu, Z. Dai, J. Zheng, A. Li, W. C. H. Choy, L. Qu, H. Dai*, and F. Wang*, “Near-Infrared II Scintillator for High-Resolution X-ray Imaging,” bioRxiv (2026/07/02,†equally contributed, DOI: https://doi.org/10.64898/2026.06.29.735208 ).
2. Z. Dai†, Z. Wu†, W.J. Li†, Sixin Xu, D. Xu, P. Xiong, Z. Liu, C. Zhang, L. Qu, L. Liu* and F. Wang*, “Real-Time Near-Infrared II Fluorescence Navigation of Magnetic Nanorobots for Image-Guided Therapy,” Science Advances, 12, eaea5126 (2026,†equally contributed).
3. D. Xu†, Z. Wu†, H. Yang, G. Chen, W.J. Li, X. Yue, G.L. Wang, S. Xu, H. Yu, Y. Liu, Z. Dai, H. Jiang, L.J. Yu*, H. Dai*, and F. Wang*, “In Vivo Calcium Imaging in the Near-Infrared II Window,” Journal of the American Chemical Society, 148, 349–359 (2026,†equally contributed).
4. Z. Wu†, D. Xu†, Z. Dai†, X. Wang, W. J. Li, S. Xu, X. Zhang, Y. Liu, P. Xiong, H. Yu, W. Ye, L. Qu, Y. Liang*, H. Dai*, F. Wang*, “In Vivo Microendoscopy in the Near-Infrared II Window,” Small (2026,†equally contributed, https://doi.org/10.1002/smll.202513882).
5. Y. Jiang, T. Ren, S. Zhao, A. Baghdasaryan, X. Zhang*, X. Chen*, F. Wang* and H. Dai*, “In vivo Imaging of the Immune System,” Nature Reviews Bioengineering (2026, https://doi.org/10.1038/s44222-026-00407-9).
2025
1. F. Wang†, I.Y.H. Wong†, H. Liu†, Z. Wu†, C.L.Y. Wong, D. Xu, D.K.K. Chan, B.T.T. Law, F.S.Y. Chan, L. Qu, S.Y.K. Law* and H. Dai*, “Guiding Esophagectomy with Intraoperative NIR-II Fluorescence Video Imaging and Rapid Computation,” Proceedings of the National Academy of Sciences, 122, e2517785122 (2025, †equally contributed).
2. P. Xiong†, S. Xu†, Z. Liu†, D. Xu†, H. Yu†, Z. Dai†, Z. Wu†, L. Qu and F. Wang*, “Acoustoluminescence in Transition Metal and Rare Earth Oxides Beyond 1800 nm for In Vivo Imaging,” bioRxiv, (2025, †equally contributed, doi: https://doi.org/10.64898/2025.12.03).
3. Y. Jiang, M. Sanyal, N. A Hussein, A. Baghdasaryan, M. Zhang, F. Wang, F. Ren, J. Li, G. Zhu, Y. Meng, J.Z. Adamska, E. Mellins and H. Dai*, “A SARS-CoV-2 vaccine on an NIR-II/SWIR emitting nanoparticle platform,” Science Advances, 11, eadp5539 (2025).
4. R. Wang, C. Zhang*, W. Tan, Y. Zhang, L. Yang, W. Chen, F. Wang, J. Tian, L. Liu*,“Soft Robotic Fish Actuated by Bionic Muscle with Embedded Sensing for Self-Adaptive Multiple Modes Swimming,” IEEE Transactions on Robotics, 41, 1329-1345 (2025).
5. P. Guo, S. Zeng, Y. Wang, H. Fan, F. Wang, L. Qu*,“Selective Aggregation for Low-Rank Adaptation in Federated Learning,” ICLR 2025 https://doi.org/10.48550/arXiv.2410.01463 (2025).
2024
1. F. Wang, Y. Zhong, O. Bruns,Y. Liang and H. Dai, “In vivo NIR-II fluorescence imaging for biology and medicine,” Nature Photonics, 18, 535–547, https://www.nature.com/articles/s41566-024-01391-5, (2024).
2. F. Ren†, F. Wang†, A. Baghdasaryan†, Y.Zhong, F. Salazar, Y. Li, C. Xu, R. Hsu, Y. Jiang, H. Liu, Z. Ma, J. Li, G. Zhu, K. K. Wong, R. Willis, E. Mellins, A. Wu and H. Dai, “Shortwave-infrared-light-emitting probes for the in vivo tracking of cancer vaccines and the elicited immune responses," Nature Biomedical Engineering, 8, 726–739, (2024, †equally contributed)
3. J. Zhang†, S. Zeng†, M. Zhang, R. Wang, F. Wang, Y. Zhou, P. P. Liang, L. Qu, "FLHetBench: Benchmarking Device and State Heterogeneity in Federated Learning", CVPR, (2024).
4. A. Baghdasaryan, H. Liu, F. Ren, R. Hsu, Y. Jiang, F. Wang, M. Zhang, L. Grigoryan, H. Dai, “Intratumor injected gold molecular clusters for NIR-II imaging and cancer therapy,” Proceedings of the National Academy of Sciences, 121, e2318265121 (2024).
5. C. Zhang, L. Yang, W. Wang, H. Fan, W. Tan, R. Wang, F. Wang, N. Xi, L. Liu, “Steering Muscle-Based Bio-Syncretic Robot Through Bionic Optimized Biped Mechanical Design,” Soft Robotics, https://doi.org/10.1089/soro.2023.0121, (2024).
6. R. Wang, C. Zhang, Y. Zhang, L. Yang, W. Tan, H. Qin, F. Wang, L. Liu, “Fast-Swimming Soft Robotic Fish Actuated by Bionic Muscle,” Soft Robotics , https://doi.org/10.1089/soro.2023.016, (2024).
7. L. Yang, C. Zhang, R. Wang, H. Qin, Y. Zhang, W. Tan, J. Yang, F. Wang, and L. Liu, "Biosyncretic Robots Actuated by Living Materials," Advanced Materials Technologies, 9, 2301183 (2024).
8. H. Qin, C. Zhang, W. Tan, L. Yang, R. Wang, Y. Zhang, F. Wang and L. Liu, “Bionic Adhesion Systems: From Natural Design to Artificial Application,” Advanced Materials Technologies, 9, 2301387 (2024).
9. P. Liang, G. Zhu, C. Huang, Y. Li, H. Sun, B. Yuan, S. Wu, J. Li, F. Wang, B. Hwang, Hongjie Dai, Rechargeable Li/Cl2 Battery Down to – 80 oC, Advanced Materials, 36,2307192 (2024).
10. W. Tan, C. Zhang, R. Wang, Y. Zhang, L. Yang, Q. Chen, F. Wang, Y. Tang, N. Xi, L. Liu, "Liquid Superspreading on Surface with Microhexagonal Structure Inspired by Rock‐Climbing Fish", Advanced Intelligent Systems, 6,2300083 (2024).
11. S. Wu, G. Zhou, Y. Wu, P. Xiong, B. Xiao, Z. Zhou, Y. Xiao, P. Shao, S. Wang, Z. Shao, Y. Wang, F. Wang*, "Multiple Defect‐Induced High‐Resolution Near‐Infrared Mechanoluminescent Materials for Non‐Destructive Detection of Blood Glucose and Lipids", Advanced Materials, 36,2408508 (2024).
12. B. Xiao, S. Wu, P. Xiong, Y. Xiao, P. Shao, Z. Zhou, Y. Wang, F. Wang*, "Broadband near-infrared mechanoluminescence in Cr3+ doped Mg3Ga2GeO8", Chemical Engineering Journal, 498, 155040 (2024).
2023
1. J. Li, Y. Kuang, X. Zhang, W.-H. Hung, C.-Y. Chiang, G. Zhu, G. Chen, F. Wang, P. Liang & H. Dai, Electrochemical acetate production from high-pressure gaseous and liquid CO2, Nature Catalysis, 6, 1151 - 1163 (2023).
2. G. Zhu, P. Liang, C. Huang, S. Wu, C. Huang, Y. Li, S. Jiang, W. Huang, J. Li, F. Wang, B. Hwang, H. Dai,"Shedding light on rechargeable Na/Cl2 battery",Proceedings of the National Academy of Sciences, 120, e2310903120 (2023).
3. Y. Zhang, R. Wang, W. Tan, L. Yang, X. Lv, X. Wang, F. Wang, C. Zhang, “Graphene Oxide- and Low-Density Polyethylene-Based Highly Sensitive Biomimetic Soft Actuators Powered by Multiple Clean Energies of Humidity and Light,” Journal of Materials Chemistry A, 11, 15670-15680 (2023).
4. H. Luo, X. Wang, Y. Wen, S. Li, T. Zhang, C. Jiang, F. Wang, L. Liu, and H. Yu, “Self-Sensing Scanning Superlens for Three-Dimensional Noninvasive Visible-Light Nanoscale Imaging on Complex Surfaces,” Nano Letter, 23, 4311–4317 (2023).
5. W. Tan, C. Zhang, R.n Wang, Y. Zhang, L. Yang, Q. Chen, F. Wang, Y. Tang, N. Xi, and L. Liu, “Liquid Superspreading on Surface with Microhexagonal Structure Inspired by Rock-Climbing Fish,” Advanced Intelligent Systems, 2023, 2300083 (2023).
2022
1. F. Wang, F. Ren, Z. Ma, L. Qu, R. Gourgues, I. E. Zadeh, Y. Zhong, C. Xu, A. Baghdasaryan, J. Li, N. Los, A. Fognini, J. Qin-Dregely and H. Dai, “In vivo Non-Invasive Confocal Fluorescence Imaging Beyond 1700 nm Using Superconducting Nanowire Single-Photon Detectors,” Nature Nanotechnology, 17, 653–660 (2022).
2. F. Wang, L. Qu, F. Ren, A. Baghdasaryan, R. Hsu, P. Liang, J. Li, G. Zhu, Z. Ma and H. Dai, “High Precision Tumor Resection Down to Few-Cell Level Guided by NIR-IIb Molecular Fluorescence Imaging,” Proceedings of the National Academy of Sciences, 119, e2123111119 (2022).
3. A. Baghdasaryan†, F. Wang†, F. Ren, Z. Ma, J. Li, L. Grigoryan, C. Xu and H. Dai, “Super-Stealth Molecular Gold Clusters for Lymph Node Imaging in the NIR-II Optical Window,” Nature Communications, 13, 5613 (2022, †equally contributed).
4. P. Liang, H. Sun, C. Huang, G. Zhu, H. Tai, J. Li, F. Wang, Y. Wang, C. Huang, S. Jiang, M. Lin, Y. Li, B. Hwang, C. Wang and H. Dai, “A Non‐Flammable High‐Voltage 4.7 V Anode‐Free Lithium Battery”, Advanced Materials, 34, 2207361 (2022).
5. L. Qu, Y. Zhou, P. Liang, Y. Xia, F. Wang, E. Adeli, F. Li and D. Rubin, "Rethinking architecture design for tackling data heterogeneity in federated learning", CVPR, 10061-10071 (2022) .
6. G. Zhu, P. Liang, C. Huang, C. Huang, Y. Li, S. Wu, J. Li, F. Wang, X. Tian, W. Huang, S. Jiang, W. Hung, H. Chen, M. Lin, B. Hwang, H. Dai, “High-Capacity Rechargeable Li/Cl2 Batteries with Graphite Positive Electrodes”, Journal of the American Chemical Society, 49, 22505–22513 (2023).
2021
1. F. Wang, Z. Ma, Y. Zhong, F. Salazar, C. Xu, F. Ren, L. Qu, A. M. Wu and H. Dai, “In vivo NIR-II structured-illumination light-sheet microscopy,” Proceedings of the National Academy of Sciences, 118, e2023888118 (2021).
2. Z. Ma, F. Wang, W. Wang, Y. Zhong, and H. Dai, “Deep learning for in vivo near-infrared imaging,” Proceedings of the National Academy of Sciences, 118, e2021446118 (2021).
3. Q. Liu, J. Tian, Y. Tian, Q. Sun, D. Sun, F. Wang, H. Xu, G. Ying, J. Wang, A. K. Yetisen, and N. Jiang, “Near-Infrared-II Nanoparticles for Cancer Imaging of Immune Checkpoint Programmed Death-Ligand 1 and Photodynamic/Immune Therapy,” ACS Nano, 15, 515-525, (2021).
4. W. Zhao, H. Yu, Y. Wen, P. Li, X. Wang, F. Wang, Y. Yang, L. Liu, W. J. Li, “Improving photoacoustic-imaging axial positioning accuracy and signal-to-noise ratio using acoustic echo effect”, Sensors and Actuators A: Physical, 329, 112788 (2021).
5. Q. Liu, J. Tian, Y. Tian, Q. Sun, D. Sun, D. Liu, F. Wang, H. Xu, G. Ying, J. Wang, A. K. Yetisen, N. Jiang, “Thiophene donor for NIR-II fluorescence imaging-guided photothermal/photodynamic/chemo combination therapy” Acta Biomaterialia, 127, 287-297 (2021).
2020
1. Z. Ma†, F. Wang†, Y. Zhong†, F. Salazar, J. Li, M. Zhang, F. Ren, A. M. Wu and H. Dai, “Cross-Link-Functionalized Nanoparticles for Rapid Excretion in Nanotheranostic Applications,” Angewandte Chemie International Edition, 59, 20552-20560 (2020, †equally contributed)
2. T. Zhang, H. Yu, P. Li, X. Wang, F. Wang, J. Shi, Z. Liu, P. Yu, W. Yang, Y. Wang, and L. Liu, Microsphere-Based Super-Resolution Imaging for Visualized Nanomanipulation. ACS Applied Materials & Interfaces, 12, 48093-48100 (2020).
3. T. Zhang, P. Li, H. Yu, F. Wang, X. Wang, T. Yang, W. Yang, W. J. Li, Y. Wang, and L. Liu, “Fabrication of flexible microlens arrays for parallel super-resolution imaging,” Applied Surface Science, Applied Surface Science, 504, 144375 (2020).
4. P. Li, G. Li, H. Yu, F. Wang, L. Liu, W. J. Li, “Advances in Dielectric Microspherical Lens Nanoscopy: Label-Free Superresolution Imaging”, IEEE Nanotechnology Magazine, 15, 38-C3 (2020).
5. Y. Wen, H. Yu, W. Zhao, P. Li, F. Wang, Z. Ge, X. Wang, L. Liu, and W. J. Li, “Scanning Super-Resolution Imaging in Enclosed Environment by Laser Tweezer Controlled Superlens,” Biophysical Journal, 119, 1–10 (2020).
6. H. Luo, H. Yu, Y. Wen, T. Zhang, P. Li, F. Wang, and L. Liu, “Enhanced high-quality super-resolution imaging in air using microsphere lens groups,” Optics Letters, 45, 2981-2984, 2020.
7. B. Jia, P. Li, F. Wang, H. Y. Chan, G. Zhang, and W. J. Li, “Determination of Microsphere-Lens Magnification Using Micro-Robotic Scanning Superlens Nanoscopy,” IEEE Open Journal of Nanotechnology, 1, 65-76, 2020.
2019
1. F. Wang, H. Wan, Z. Ma, Q. Sun, Y. Tian, L. Qu, H. Du, M. Zhang, L. Li, H. Ma, J. Luo, Y. Liang, W. J. Li, G. Hong, L. Liu and H. Dai, “Light-sheet microscopy in the near-infrared II window,” Nature Methods, 16, 545-552 (2019).
2. Y. Zhong†, Z. Ma†, F. Wang†, X. Wang, Y. Yang, Y. Liu, X. Zhao, J. Li, H. Du, M. Zhang, Q. Cui, S. Zhu, Q. Sun, H. Wan, Y. Tian, Q. Liu, W. Wang, K. C. Garcia and H. Dai, “In vivo molecular imaging for immunotherapy using ultra-bright near-infrared-IIb rare-earth nanoparticles,” Nature Biotechnology, 37, 1322-1331 (2019, †equally contributed).
3. H. Wan, H. Du, F. Wang, and H.Dai, “Molecular Imaging in the Second Near-Infrared Window,” Advanced Functional Materials, 29, 25, 2019.
4. W. X. Zhao, H. B. Yu, Y. D. Wen, F. Wang, Y. Yang, Z. Liu, L. Q. Liu, and W. J. Li, “Detection of micro/nano-particle concentration using modulated light-emitting diode white light source,” Sensors and Actuators A-Physical, 285, 89-97, 2019.
5. Y. Wen, H. Yu, W. Zhao, F. Wang, X. Wang, L. Liu, and W. J. Li, “Photonic Nanojet Sub-Diffraction Nano-Fabrication With in situ Super-Resolution Imaging,” IEEE Transactions on Nanotechnology, 18, 226-233, 2019.
6. G. Li, F. Wang, W. Yang, J. Yang, Y. Wang, W. Wang, and L. Liu, “Development of an image biosensor based on an optogenetically engineered cell for visual prostheses,” Nanoscale, 11, 28, 13213-13218, 2019.
7. G. Li, F. Wang, W. Yang, W. Wang, G. Li, Y. Wang, and L. Liu, “Imaging with Optogenetically Engineered Living Cells as a Photodetector,” Advanced Biosystems, 3, 8, 1800319, 2019.
8. B. Jia, F. Wang, H. Chan, G. Zhang, and W. J. Li, “In situ printing of liquid superlenses for subdiffraction-limited color imaging of nanobiostructures in nature,” Microsystems & Nanoengineering, 5, 1, 1, 2019.
2018
1. F. Wang, L. Liu, G. Li, P. Li, Y. Wen, G. Zhang, Y. Wang, G.-B. Lee and W. J. Li, “Thermometry of photosensitive and optically induced electrokinetics chips,” Microsystems & Nanoengineering, 4, 26 (2018).
2. M. Zhang, J. Yue, R. Cui, Z. Ma, H. Wan, F. Wang, S. Zhu, Y. Zhou, Y. Kuang, Y. Zhong, D.-W. P., H. Dai, “Bright quantum dots emitting at ∼ 1,600 nm in the NIR-IIb window for deep tissue fluorescence imaging,” Proceedings of the National Academy of Sciences, 201806153 (2018).
3. H. Wan, H. Ma, S. Zhu, F. Wang, Y. Tian, R. Ma, Q. Yang, Z. Hu, T. Zhu, W. Wang, Z. Ma, M. Zhang, Y. Zhong, H. Sun, Y. Liang, and H. Dai, “Developing a Bright NIR-II Fluorophore with Fast Renal Excretion and Its Application in Molecular Imaging of Immune Checkpoint PD-L1,” Advanced Functional Materials, 28, 50, 1804956, (2018).
4. P. Li, H. Yu, N. Liu, F. Wang, G.B. Lee, Y. Wang, L. Liu, W. J. Li, “Visible light induced electropolymerization of suspended hydrogel bioscaffolds in a microfluidic chip,” Biomater. Sci., 6, 1371–1378 (2018).
5. G. Li, J. Yang, W. Yang, F. Wang, Y. Wang, W. Wang, L. Liu, “Label-free multidimensional information acquisition from optogenetically engineered cells using a graphene transistor,” Nanoscale, 10 (5), 2285-2290 (2018)
2017
1. Y. Wen, F. Wang, H. Yu, P. Li, L. Liu and W. J. Li, “Laser-Nanomachining by Microsphere Induced Photonic Nanojet,” Sensors and Actuators A: Physical, 258,115 (2017).
2016
1. F. Wang, L. Liu, H. Yu, Y. Wen, P. Yu, Z. Liu, Y. Wang, and W. J. Li, “Scanning Superlens Microscopy for Non-invasive Large Field-of-view Visible Light Nanoscale Imaging,” Nature Communications, 7, 13748 (2016).
2. F. Wang, L. Liu, P. Yu, Z. Liu, H. Yu, Y. Wang, and W. J. Li, “Three-dimensional Super-resolution Morphology by Near-field Assisted White-light Interferometry,” Scientific Reports, 6, 24703 (2016).
3. N. Liu, F. Wang, L. Liu, H. Yu, S. Xie, J. Wang, Y. Wang, G. B. Lee and W. J. Li, “Rapidly patterning micro/nano devices by directly assembling ions and nanomaterials,” Scientific Reports, 6: 32106 (2016).
4. H. S. S. Lai, F. Wang, Y. Li, L. Liu and W. J. Li, “Super-Resolution Real Imaging in Microsphere-Assisted Microscopy,” PLOS ONE, 11, e0165194 (2016).
5. P. Li, N. Liu, H. Yu, F. Wang, L. Liu, G. B. Lee, Y. Wang and W. J. Li. Silver Nanostructures Synthesis via Optically Induced Electrochemical Deposition. Scientific Reports, 6: 28035 (2016).
2015
1. F. Wang, L. Liu, and W. J. Li, “Graphene-based Glucose Sensors: A Brief Review,” IEEE Transactions on Nanobioscience, 14, 818-834 (2015).
2. F. Wang, H. S. S. Lai, L. Liu, P. Li, H. Yu, Z. Liu, Y. Wang, and W. J. Li, “Super-resolution Endoscopy for Real-time Wide-field Imaging,” Optics Express, 23, 16803-16811, (2015).
3. D. Wang, P. Yu, F. Wang, H. Y. Chan, L. Zhou, Z. Dong, L. Liu, and W. J. Li, “Improving Atomic Force Microscopy Imaging by A Direct Inverse Asymmetric PI Hysteresis Model,” Sensors, 15, 3409-25 (2015).
4. J. Shi, L. Liu, P. Zhou, F. Wang, and Y. Wang, “Subnanomachining by Ultrasonic-vibration-assisted Atomic Force Microscopy,” IEEE Transactions on Nanotechnology, 14, 735-741 (2015).
2014
1. F. Wang, P. Li, D. Wang, L. Li, S. Xie, L. Liu, Y. Wang, and W. J. Li, “Mechanically Modulated Dewetting by Atomic Force Microscope for Micro- and Nano- Droplet Array Fabrication,” Scientific Reports, 4, 6524 (2014).
2. F. Wang, F. Fei, L. Liu, H. Yu, P. Yu, Y. Wang, G. B. Lee, and W. J. Li, “Exploring Pulse-voltage-triggered Optically Induced Electrohydrodynamic Instability for Femtolitre Droplet Generation,” Applied Physics Letters, 104, 264103 (2014).
3. F. Wang, H. Yu, W. Liang, L. Liu, J. D. Mai, G. B. Lee, and W. J. Li, “Optically Induced Electrohydrodynamic Instability-based Micro-patterning of Fluidic Thin Films,” Microfluidics and Nanofluidics, 16, 1097-1106 (2014).
2013
1. F. Wang, H. Yu, N. Liu, J. D. Mai, L. Liu, G. B. Lee, and W. J. Li, “Non-ultraviolet-based Patterning of Polymer Structures by Optically Induced Electrohydrodynamic Instability,” Applied Physics Letters, 103, 5 (2013).