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A Novel Ratiometric Fluorescent Probe for Cyanide Anion with High Selectivity and Its Application in Cell Imaging

A Novel Ratiometric Fluorescent Probe for Cyanide Anion with High Selectivity and Its Application in Cell Imaging
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摘要 A novel hybrid acenaphthene-hemicyanine dye(Acc) was designed and synthesized as a colorimetric and ratiometric fluorescent sensor for cyanide detection. The nucleophilic addition of cyanide anion resulted in the blocking of the intramolecular charge transfer(ICT). Thus, the sensor exhibited high sensitivity and selectivity to- wards cyanide anion among many anions in dimethylsulphoxide(DMSO)-water media, with the emission wavelength displaying a very large shift(186 nm). Moreover, the color changes of the solution could be observed by the naked eyes and it had a short response time. Under optimized conditions, the detection limit for cyanide was calculated to be 1.3μmol/L(R2=0.9958). In addition, the probe had excellent biocompatibility and could be utilized to monitor cyanide in living cells. A novel hybrid acenaphthene-hemicyanine dye(Acc) was designed and synthesized as a colorimetric and ratiometric fluorescent sensor for cyanide detection. The nucleophilic addition of cyanide anion resulted in the blocking of the intramolecular charge transfer(ICT). Thus, the sensor exhibited high sensitivity and selectivity to- wards cyanide anion among many anions in dimethylsulphoxide(DMSO)-water media, with the emission wavelength displaying a very large shift(186 nm). Moreover, the color changes of the solution could be observed by the naked eyes and it had a short response time. Under optimized conditions, the detection limit for cyanide was calculated to be 1.3μmol/L(R2=0.9958). In addition, the probe had excellent biocompatibility and could be utilized to monitor cyanide in living cells.
出处 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2017年第4期534-539,共6页 高等学校化学研究(英文版)
关键词 Ratiometric fluorescence CYANIDE Nucleophilic addition BIOIMAGING Ratiometric fluorescence Cyanide Nucleophilic addition Bioimaging
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