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Automated Two-dimensional Spatiotemporal Analysis of Mobile Single-molecule FRET Probes
Published on: November 23, 2021
A novel fluorescence probe based on triphenylamine Schiff base for bioimaging and responding to pH and Fe3
Lei Wang1, Xiaodong Yang1, Xiuli Chen1
1School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510640, PR China.
Abstract:
A novel fluorescence probe 1 based on triphenylamine was synthesized and characterized by NMR, IR, high resolution mass spectrometry and elemental analysis. Its fluorescence was quenched when pH below 2. There was a linear relationship between the fluorescence intensity and pH value ranged from 2 to 7. And its fluorescence emission was reversibility in acidic and alkaline solution. Furthermore, it exhibited remarkable selectivity and high sensitivity to Fe3+ and was able to detect Fe3+ in aqueous solution with low detection limit of 0.511μM. Job plot showed that the binding stoichiometry of 1 with Fe3+ was 1:1. Further observations of 1H NMR titration suggested that coordination interaction between Fe3+ and nitrogen atom on CN bond promoted the intramolecular charge transfer (ICT) or energy transfer process causing fluorescence quenching. Additionally, 1 was also able to be applied for detecting Fe3+ in living cell and bioimaging.
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