کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
5131304 | 1490890 | 2016 | 8 صفحه PDF | دانلود رایگان |
- Dual responsive lanthanide coordination polymer particles C343@Eu-TDA were synthesized.
- The guest molecular coumarin 343 sensitized the luminescence of Eu-TDA network.
- C343@Eu-TDA showed dual response towards water.
- Direct visualization of alcoholic strength was achieved by the distinguished fluorescence color change of C343@Eu-TDA.
This study demonstrates a new strategy for colorimetric detection of alcoholic strength (AS) in spirit samples based on dual-responsive lanthanide infinite coordination polymer (Ln-ICP) particles with ratiometric fluorescence. The ICP used in this study are composed of two components: one is the supramolecular Ln-ICP network formed by the coordination between the ligand 2,2'-thiodiacetic acid (TDA) and central metal ion Eu3+; and the other is a fluorescent dye, i.e., coumarin 343 (C343), both as the cofactor ligand and as the sensitizer, doped into the Ln-ICP network through self-adaptive chemistry. Upon being excited at 300Â nm, the red fluorescence of Ln-ICP network itself at 617Â nm is highly enhanced due to the concomitant energy transfer from C343 to Eu3+, while the fluorescence of C343 at 495Â nm is supressed. In pure ethanol solvent, the as-formed C343@Eu-TDA is well dispersed and quite stable. However, the addition of water into ethanolic dispersion of C343@Eu-TDA destructs Eu-TDA network structure, resulting in the release of C343 from ICP network into the solvent. Consequently, the fluorescence of Eu-TDA turns off and the fluorescence of C343 turns on, leading to the fluorescent color change of the dispersion from red to blue, which constitutes a new mechanism for colorimetric sensing of AS in commercial spirit samples. With the method developed here, we could clearly distinguish the AS of different spirit samples within a wide linear range from 10% vol to 100% vol directly by “naked eye” with the help of UV-lamp (365Â nm). This study not only offers a new method for on-the-spot visible detection of AS, but also provides a strategy for dual-responsive sensing mode by rational designing the optical properties of the Ln-ICP network and the guest, respectively.
Journal: Analytica Chimica Acta - Volume 942, 26 October 2016, Pages 96-103