Meng Li
Affiliations: | Environmental Science and Engineering | North China Electric Power University |
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Green MJ, Ge H, Flower SE, et al. (2023) Fluorescent naphthalimide boronates as theranostics: structural investigations, confocal fluorescence and multiphoton fluorescence lifetime imaging microscopy in living cells. Rsc Chemical Biology. 4: 1082-1095 |
Li M, Shi Q, Song N, et al. (2023) Current trends in the detection and removal of heavy metal ions using functional materials. Chemical Society Reviews |
Li M, Xu M, Wang H, et al. (2023) Constructing a solar evaporator by stacking exhausted wood sponges for freshwater generation and fertilizer recovery. Chemsuschem. e202300426 |
Xing L, Li M, Li M, et al. (2022) MOF-Derived Robust and Synergetic Acid Sites Inducing C-N Bond Disruption for Energy-Efficient CO Desorption. Environmental Science & Technology |
Li X, Li M, Shi Q, et al. (2022) Exhausted Cr(VI) Sensing/Removal Aerogels Are Recycled for Water Purification and Solar-Thermal Energy Generation. Small (Weinheim An Der Bergstrasse, Germany). e2201949 |
Li M, Li X, Jiang M, et al. (2020) Engineering a ratiometric fluorescent sensor membrane containing carbon dots for efficient fluoride detection and removal Chemical Engineering Journal. 399: 125741 |
Li X, Li M, Yang M, et al. (2020) “Irregular” aggregation-induced emission luminogens Coordination Chemistry Reviews. 418: 213358 |
Yang J, Gu K, Shi C, et al. (2019) Fluorescent thermometer based on a quinolinemalononitrile copolymer with aggregation-induced emission characteristics Materials Chemistry Frontiers. 3: 1503-1509 |
Li M, An X, Jiang M, et al. (2019) “Cellulose Spacer” Strategy: Anti-Aggregation-CausedQuenching Membrane for Mercury Ion Detection and Removal Acs Sustainable Chemistry & Engineering. 7: 15182-15189 |
Li M, Wang B, An X, et al. (2019) A practical graphitic carbon nitride (g-C3N4) based fluorescence sensor for the competitive detection of trithiocyanuric acid and mercury ions Dyes and Pigments. 170: 107476 |