Electrochemical determination of hydroquinone in cosmetics by cyclic voltammetry using glassy carbon electrode

The electrochemical behaviour of hydroquinone in aqueous solution was studied by cyclic voltammetry using glassy carbon electrode to optimize a method for its determination as an active ingredient in cosmetic preparations. The effect of supporting electrolyte (0.1M KCI, KNO3, H2SO4, and phosphate bu...

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Main Authors: Dungo, Vladimer C., Gong, Bing Jing Z., Tolentino, Elaine Nicolas
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Published: Animo Repository 2005
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/13360
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Institution: De La Salle University
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-137932024-11-11T03:37:08Z Electrochemical determination of hydroquinone in cosmetics by cyclic voltammetry using glassy carbon electrode Dungo, Vladimer C. Gong, Bing Jing Z. Tolentino, Elaine Nicolas The electrochemical behaviour of hydroquinone in aqueous solution was studied by cyclic voltammetry using glassy carbon electrode to optimize a method for its determination as an active ingredient in cosmetic preparations. The effect of supporting electrolyte (0.1M KCI, KNO3, H2SO4, and phosphate buffer), pH (2.0, 4.5, 7.0, 9.5, 12.0) and scan rate (25, 50, 80, 100 mV/s) were studied. An increase in current was observed at increasing rate for all electrolytes suggesting a diffusion-controlled transport of electroactive species. In basic medium, the rate of reduction was faster, while the rate of oxidation is slower. The reverse was true in acidic medium. Hydroquinone exhibited better response using phosphate buffer (pH = 9.5) at a scan rate of 100mV/s making it suitable for analysis. The voltammogram observed was quasi-reversible with two distinct peaks. Cathodic peak was used for the analysis. The detection limit was 0.1 µM with a linear range of 1.0 x 10 to 1.0 x 10M of HQ. Both the standard calibration and standard addition methods could be employed for the analyses of the samples. The analyses of three commercially available skin whiteners/exfoliants in liquid preparations gave % recovery range of 98.13 104.6%. The spiked placebo method was used to determine the accuracy of the method in the analysis of cream sample. This was conducted by combining 5.0 g sepigel (cream base) and known amount of hydroquinone. The standard addition method gave 96.81% recovery. In all the analyses, the %RSD was below 2.90%. Results of ten repetitive measurements showed 0.273% RSD.. The method exhibits excellent stability, reproducibility, immediate response, and can be used to quantify hydroquinone in other cosmetic preparations. 2005-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/13360 Faculty Research Work Animo Repository Hydroquinone—Analysis Electrochemical analysis Chemistry
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Hydroquinone—Analysis
Electrochemical analysis
Chemistry
spellingShingle Hydroquinone—Analysis
Electrochemical analysis
Chemistry
Dungo, Vladimer C.
Gong, Bing Jing Z.
Tolentino, Elaine Nicolas
Electrochemical determination of hydroquinone in cosmetics by cyclic voltammetry using glassy carbon electrode
description The electrochemical behaviour of hydroquinone in aqueous solution was studied by cyclic voltammetry using glassy carbon electrode to optimize a method for its determination as an active ingredient in cosmetic preparations. The effect of supporting electrolyte (0.1M KCI, KNO3, H2SO4, and phosphate buffer), pH (2.0, 4.5, 7.0, 9.5, 12.0) and scan rate (25, 50, 80, 100 mV/s) were studied. An increase in current was observed at increasing rate for all electrolytes suggesting a diffusion-controlled transport of electroactive species. In basic medium, the rate of reduction was faster, while the rate of oxidation is slower. The reverse was true in acidic medium. Hydroquinone exhibited better response using phosphate buffer (pH = 9.5) at a scan rate of 100mV/s making it suitable for analysis. The voltammogram observed was quasi-reversible with two distinct peaks. Cathodic peak was used for the analysis. The detection limit was 0.1 µM with a linear range of 1.0 x 10 to 1.0 x 10M of HQ. Both the standard calibration and standard addition methods could be employed for the analyses of the samples. The analyses of three commercially available skin whiteners/exfoliants in liquid preparations gave % recovery range of 98.13 104.6%. The spiked placebo method was used to determine the accuracy of the method in the analysis of cream sample. This was conducted by combining 5.0 g sepigel (cream base) and known amount of hydroquinone. The standard addition method gave 96.81% recovery. In all the analyses, the %RSD was below 2.90%. Results of ten repetitive measurements showed 0.273% RSD.. The method exhibits excellent stability, reproducibility, immediate response, and can be used to quantify hydroquinone in other cosmetic preparations.
format text
author Dungo, Vladimer C.
Gong, Bing Jing Z.
Tolentino, Elaine Nicolas
author_facet Dungo, Vladimer C.
Gong, Bing Jing Z.
Tolentino, Elaine Nicolas
author_sort Dungo, Vladimer C.
title Electrochemical determination of hydroquinone in cosmetics by cyclic voltammetry using glassy carbon electrode
title_short Electrochemical determination of hydroquinone in cosmetics by cyclic voltammetry using glassy carbon electrode
title_full Electrochemical determination of hydroquinone in cosmetics by cyclic voltammetry using glassy carbon electrode
title_fullStr Electrochemical determination of hydroquinone in cosmetics by cyclic voltammetry using glassy carbon electrode
title_full_unstemmed Electrochemical determination of hydroquinone in cosmetics by cyclic voltammetry using glassy carbon electrode
title_sort electrochemical determination of hydroquinone in cosmetics by cyclic voltammetry using glassy carbon electrode
publisher Animo Repository
publishDate 2005
url https://animorepository.dlsu.edu.ph/faculty_research/13360
_version_ 1816861337688473600