Zr4+-Based Metal Organic Gel As A Fluorescent "Turn On-Off" Sensing Platform For The Selective Detection And Adsorption Of Cro42-

Materials Chemistry Frontiers(2021)

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摘要
The recognition and adsorption of heavy metal ions in aqueous media remains a serious challenge. Herein, a rapid synthesis method of Zr4+-based metal-organic gels (Zr-MOG-1 and Zr-MOG-2) was first developed. Arginine (ARG), which is the linker of Zr-MOG-2, can trigger the MOG to emit an obvious fluorescent "turn-on" signal through ligand to metal charge transfer (LMCT). Remarkably, Zr-MOG-2 not only achieves a good fluorescent signal, but also provides a recognition platform for CrO42-. Therefore, Zr-MOG-2 with excellent fluorescence can be used for the selective detection of CrO42- in aqueous media. CrO42- dilutes the LMCT between ARG and Zr4+ and induces a "turn-off" effect on the fluorescence of Zr-MOG-2. The sensing mechanism of CrO42- is demonstrated to be a fluorescence resonance energy transfer (FRET) process. The detection linear range for CrO42- is 0.5-10.2 mu M, and the detection limit is as low as 5.2 ppb. The sensing effect for CrO42- in simulated water samples was also investigated. In addition, the Zr-MOG-2 xerogel has good adsorption capacity for CrO42- in water including excess other ions. This novel fluorescent switch sensing platform lays a solid foundation for the multifunctional utilization of MOGs.
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