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- W3141665721 abstract "Herein, a novel synthetic strategy has been proposed to prepare engineered SnO 2 @ZIF-8/gC 3 N 4 nanohybrids for electrochemical sensing of p -nitrophenol ( p -NP). The electrochemical properties were investigated using cyclic voltammetry (CV), chronoamperometry (CA), and differential pulse voltammetry (DPV). The developed nanohybrid sensor displayed an excellent electrochemical performance towards sensing of p -NP with a detection limit of 0.565 μM. The sensitivity of the prepared nanohybrid was found to be 2.63 μAcm −2 μM −1 . Moreover, the newly fabricated sensor exhibited remarkable selectivity (over tenfold excess) in the presence of common interferents. The simultaneous detection of isomers of nitrophenol is difficult using the developed sensor. However, other common interferents, such as phenol and aminophenol have negligible effects on the sensitivity of SnO 2 @ZIF-8/gC 3 N 4 towards the detection of p -nitrophenol. Further, the newly developed sensor showed consistency of sensing response up to 30 days. Thus, implementation of SnO 2 @ZIF-8/gC 3 N 4 nanohybrids as a p -NP electrochemical sensor offers the advantages of simplicity, selectivity, and stability. • Sonochemical synthesis of novel SnO 2 @ZIF-8 nanohybrid based electrochemical sensor. • Encapsulation of SnO 2 @ZIF-8 to gC 3 N 4 matrix to promote sensing performance. • Electrochemical sensing of p-Nitrophenol with detection limit of 0.565 μM. • Remarkably sensitivity of 2.63 μAcm −2 μM −1 with great selectivity and invariable stability." @default.
- W3141665721 created "2021-04-13" @default.
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- W3141665721 date "2021-06-01" @default.
- W3141665721 modified "2023-09-27" @default.
- W3141665721 title "Novel SnO2@ZIF-8/gC3N4 nanohybrids for excellent electrochemical performance towards sensing of p-nitrophenol" @default.
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- W3141665721 doi "https://doi.org/10.1016/j.envres.2021.111077" @default.
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