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Title: | Rhodamine-based fluorescent probe for sequential detection of Al3+ ions and adenosine monophosphate in water |
Authors: | Kaur, R. Saini, S. Kaur, N. Singh, N. Jang, D. O. |
Keywords: | Chemosensor Fluorescence Rhodamine Al3+ AMP |
Issue Date: | 16-Jun-2021 |
Abstract: | Organic nanoparticles (N1) were prepared by dispersing thiophene-conjugated rhodamine derivative 1 in a buffer solution (10 mM TRIS, pH 7.4, containing 1% DMSO, v/v). N1 selectively recognized Al3+ ions through the “OFF-ON” switching mechanism of the spirolactam ring in rhodamine. The resulting N1·Al3+ complex recognized the biologically important molecule adenosine monophosphate (AMP) through a cation displacement process with a detection limit of 2 nM. N1 was capable of determining the concentration of Al3+ ions in environmental and biological samples. Portable test strips of N1 were prepared for the recognition of Al3+ ions and AMP for practical uses. Furthermore, it was demonstrated that the N1·Al3+ complex facilitated real-time monitoring of AMP concentration in the hydrolysis of ATP and ADP. |
URI: | http://localhost:8080/xmlui/handle/123456789/1828 |
Appears in Collections: | Year-2020 |
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