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- W4283776276 abstract "A composite of Nickel with oxidized g-C3N4 (Oxi-g-C3N4) was successfully synthesized via hydrothermal treatment. Introduction of the Nickel metal with Oxi-g-C3N4 resulted in a porous rod like morphology, enhancing the effective surface area of the material. The DRS-UV studies indicate band gap for the materials in the order g-C3N4 > Oxi-g-C3N4 > Ni/Oxi-g-C3N4 indicating an improvement in conductivity accrued as a result of composting. The new composite material also shows good fluorescence as confirmed by photoluminescence measurement. The Ni/Oxi-g-C3N4 was used to modify a graphite electrode and detailed electrochemical characterization carried out. The electocatalytic property is assessed using chlorpyrifos as a substrate. Chlorpyrifos is an organophosphate pesticide which is highly carcinogenic and causes long term environmental effects even at trace levels and higher exposure can cause cholinesterase inhibition in human. Thus the detection of chlorpyrifos has gained prominence. The Ni/Oxi-g-C3N4 electrode could detect Chlorpyrifos in a linear range of 1 to 15 fM with detection limit of 0.3 fM. Chlorpyrifos sensing in real samples like well water, lake water, tap water and sea water using the sensor gave very good recoveries in the range of 99–99.75%. The newly synthesized Ni/Oxi-g-C3N4 proves to be a fascinating material for electrocatalytic and fluorescence application." @default.
- W4283776276 created "2022-07-03" @default.
- W4283776276 creator A5000413365 @default.
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- W4283776276 date "2022-08-01" @default.
- W4283776276 modified "2023-10-06" @default.
- W4283776276 title "Perforated oxidized graphitic carbon nitride with Nickel spikes as efficient material for electrochemical sensing of chlorpyrifos in water samples" @default.
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- W4283776276 doi "https://doi.org/10.1016/j.surfin.2022.102170" @default.
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