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1. Wu, G.; Lv, W. L.; Qian, C.; Liu, X. W., High-Throughput Identification of Single Nanoparticles via Electrochemically Assisted High-Resolution Plasmonic Scattering Interferometric Microscopy. Nano Lett. 2024, 24, (20), 6124-6130.
2. Wu, G.; Qian, C.; Lv, W. L.; Zhao, X. N.; Liu, X. W., Dynamic imaging of interfacial electrochemistry on single Ag nanowires by azimuth-modulated plasmonic scattering interferometry. Nat Commun 2023, 14, (1).
3. Wan, J. H.; Qian, C.; Wu, G.; Liu, X. W., High-Resolution, High-Throughput Plasmonic Imaging of Nanomaterials. Anal. Chem. 2023, 95, (18), 7271-7277.
4. Lv, W. L.; Qian, C.; Cao, C. X.; Lv, Z. T.; Liu, X. W., Plasmonic Scattering Imaging of Surface-Bonded Nanoparticles at the Solution-Solid Interface. Acs Appl Mater Inter 2023, 15, (24), 29561-29567.
5. Gong, B.; Chen, W.; Sit, P. H. L.; Liu, X. W.; Qian, C.; Yu, H. Q., Multiple spectroscopic insights into the interaction mechanisms between proteins and humic acid. Water Res. 2023, 243.
6. Gong, B.; Chen, W.; Qian, C.; Sit, P. H. L.; Liu, X. W.; Yu, H. Q., Contribution of proteins to ceramic membrane fouling at the early stage of membrane filtration. Sep. Purif. Technol. 2023, 312.
7. Gong, B.; Chen, W.; Liu, X. W.; Qian, C., One-step fluorometric determination of multiple-component dissolved organic matter in aquatic environments. Sci. Total Environ. 2023, 873.
8. Du, M.; Chen, W.; Qian, C.; Chen, Z.; Chen, G. L.; Yu, H. Q., Using Rayleigh Scattering to Correct the Inner Filter Effect of the Fluorescence Excitation-Emission Matrix. Anal. Chem. 2023, 95, (33), 12273-12283.
9. Chen, Z.; Du, M.; Yang, X. D.; Chen, W.; Li, Y. S.; Qian, C.; Yu, H. Q., Deep-Learning-Based Automated Tracking and Counting of Living Plankton in Natural Aquatic Environments. Environ. Sci. Technol. 2023.
10. Yang, X. D.; Gong, B.; Chen, W.; Qian, C.; Du, M.; Yu, H. Q., In-situ quantitative monitoring the organic contaminants uptake onto suspended microplastics in aquatic environments. Water Res. 2022, 215.
11. Wu, G.; Zhou, X.; Lv, W. L.; Qian, C.; Liu, X. W., Real-Time Plasmonic Imaging of the Compositional Evolution of Single Nanoparticles in Electrochemical Reactions. Nano Lett. 2022, 22, (11), 4383-4391.
12. Lv, Z.-T.; Qian, C.; Liu, Y.-N.; Lv, Y.-H.; Liu, X.-W., Optical Tracking of Surfactant-Tuned Bacterial Adhesion: a Single-Cell Imaging Study. Applied and environmental microbiology 2022, e0162622.
13. Gong, B.; Du, M.; Qian, C.; Chen, W.; Sit, P. H. L.; Liu, X. W.; Yu, H. Q., Why Should Tryptones Rather Than Bovine Serum Albumin Be Used as Model Proteins to Explore the Interactions between Proteins and Pollutants in Environments? Environ. Sci. Techno. Lett. 2021, 8, (12), 1038-1044.
14. Qian, C.; Chen, W.; Chen, W.; Gong, B.; Yu, H. Q., Determination of Saccharides in Environments Using a Sulfuric Acid-Fluorescence Approach. Environ. Sci. Technol. 2020, 54, (11), 6632-6638.
15. Qian, C.; Wu, G.; Jiang, D.; Zhao, X.; Chen, H. B.; Yang, Y.; Liu, X. W., Identification of Nanoparticles via Plasmonic Scattering Interferometry. Angewandte Chemie - International Edition 2019, 58, (13), 4217-4220.
16. Qian, C.; Chen, W.; Gong, B.; Wang, L. F.; Yu, H. Q., Diagnosis of the unexpected fluorescent contaminants in quantifying dissolved organic matter using excitation-emission matrix fluorescence spectroscopy. Water Res. 2019, 163.
17. Guan, Y. F.; Qian, C.; Chen, W.; Huang, B. C.; Wang, Y. J.; Yu, H. Q., Interaction between humic acid and protein in membrane fouling process: A spectroscopic insight. Water Res. 2018, 145, 146-152.
18. Chen, W.; Ouyang, Z. Y.; Qian, C.; Yu, H. Q., Induced structural changes of humic acid by exposure of polystyrene microplastics: A spectroscopic insight. Environ. Pollut. 2018, 233, 1-7.
19. Qian, C.; Wang, L. F.; Chen, W.; Wang, Y. S.; Liu, X. Y.; Jiang, H.; Yu, H. Q., Fluorescence Approach for the Determination of Fluorescent Dissolved Organic Matter. Anal. Chem. 2017, 89, (7), 4264-4271.
20. Qian, C.; Chen, W.; Li, W. H.; Yu, H. Q., A chemometric analysis on the fluorescent dissolved organic matter in a full-scale sequencing batch reactor for municipal wastewater treatment. Front. Environ. Sci. Eng. 2017, 11, (4).