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QUANTITATIVE DETERMINATION OF HYDROQUINONE VIA ELECTROCHEMICAL METHODS AT A NANO-ARCHITECTURE PLATINUM ELECTRODE

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SOC CHEMISTS TECHNOLOGISTS MADECONIA
DOI: 10.20450/mjcce.2023.2688

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hydroquinone; convolutive cyclic voltammetry; mesoporous; hexagonal; platinum

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Hydroquinone (HQ) was measured using electrochemical methods, and it was found that a modified platinum electrode exhibited good sensitivity for HQ detection in 1.0 mol/l HClO4.
Hydroquinone (HQ) was electrochemically measured using convolutive cyclic voltammetry and differential pulse voltammetry (DPV) on a nano-architecture mesoporous platinum film electrochemically grown from a hexagonal liquid crystalline template of C16EO8 surfactant in 1.0 mol/l HClO4. The HQ cyclic voltammograms produced one oxidative peak in the forward sweep of potential and one reductive peak in the reverse sweep. The effect of HQ concentration was investigated using the different electro-chemical methods mentioned above. The modified platinum electrode exhibits good sensitivity for the de-termination of the HQ compound in 1.0 mol/l HClO4. The best executive was found for the i-t curve method developed from cyclic voltammetry of HQ. It exhibits a linear peak current response over the concentration range of 8 to 55 & mu;mol/l, with a detection limit of 0.5726 & mu;mol/l and a quantification limit of 1.9088 & mu;mol/l, confirming the accuracy and sensitivity of this quick, cheap, and easy method.

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