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A hybrid borotungstate-coated metal–organic framework with supercapacitance, photocatalytic dye degradation and H<sub>2</sub>O<sub>2</sub> sensing properties

14

Citations

74

References

2022

Year

Abstract

The compounding of polyoxometalates (POMs) with structurally well-defined and porous metal-organic frameworks (MOFs) has become a hot research topic. Here, a core-shell type hybrid, {Ag<sub>5</sub>BW<sub>12</sub>O<sub>40</sub>}@[Ag<sub>3</sub>(μ-Hbtc)(μ-H<sub>2</sub>btc)]<sub><i>n</i></sub> (called {Ag<sub>5</sub>BW<sub>12</sub>O<sub>40</sub>}@Ag-BTC-2, where BTC = 1,3,5-benzyl carboxylic acid), was successfully prepared <i>via</i> a simple grinding method. IR, XRD, SEM, TEM, and XPS analysis was used to confirm the structure. The specific capacitance is 179.1 F g<sup>-1</sup> when the current density is 1 A g<sup>-1</sup>, using nickel foam as the collector, and the capacitance retention is 97.4% after 5000 cycles. The resulting aqueous-based symmetric supercapacitor has a power density of 496 W kg<sup>-1</sup> and an energy density of 12.4 W h kg<sup>-1</sup>. In addition, the degradation rates using {Ag<sub>5</sub>BW<sub>12</sub>O<sub>40</sub>}@Ag-BTC-2 toward methylene blue (MB), rhodamine B (RhB), and methyl orange (MO) exceeded 90% in 140 min and remained essentially unchanged over five replicate experiments, showing high photocatalytic activity. Meanwhile, when {Ag<sub>5</sub>BW<sub>12</sub>O<sub>40</sub>}@Ag-BTC-2 acts as a H<sub>2</sub>O<sub>2</sub> biosensor, it has a low detection limit (0.19 μM), a wide linear range (0.4 μM-0.27 mM) and high anti-interference properties. This shows that the synthesis of POMOFs <i>via</i> a grinding method is an effective strategy to improve the performance.

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