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- W4383218707 abstract "It is widely acknowledged that ClO− and SCN− can have a deleterious influence on the environment and organisms. As a result, novel approaches for detecting ClO− and SCN− are urgently required. Herein, a new Salamo-like fluorescence sensor (denoted as EAMS) was synthesized, and its high sensitivity and rapid recognition of ClO− and SCN− were achieved through the cleavage and generation of Schiff base (imine) bonds in its molecular structure. Upon addition of ClO−, the fluorescence intensity of the sensor EAMS decreased continuously at 395 nm. Notably, when introducing SCN−, the fluorescence intensity of the sensor EAMS was recovered. The sensor EAMS can sensitively and selectively detect ClO− and SCN− with a detection limit of 2.46 nM and 3.27 nM, respectively. Moreover, the sensor EAMS has excellent reversibility and regeneration, effectively reducing the burden on the environment. Tests in actual water samples also confirmed that the sensor EAMS could be used in the real environment, and has the characteristics of fast response, high selectivity, and high sensitivity. As an innovative, sensitive and low-cost sensor, the sensor EAMS has a good application prospect in pollution detection and pathological research of clinical diseases." @default.
- W4383218707 created "2023-07-06" @default.
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- W4383218707 date "2023-11-01" @default.
- W4383218707 modified "2023-10-12" @default.
- W4383218707 title "A highly sensitive and selective “on-off-on” salamo-like fluorescent sensor for relay recognition of ClO− and SCN−" @default.
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- W4383218707 doi "https://doi.org/10.1016/j.molstruc.2023.136164" @default.
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