2020
DOI: 10.1002/slct.201903628
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Enzymeless Electrocatalytic Detection of Uric Acid Using Polydopamine/Polypyrrole Copolymeric film

Abstract: Uric acid is mainly produced from metabolism of purine nucleotide in human body and have several medical importance in human system. It is therefore very imperative to develop a sensitive and accurate method of its detection. This study aimed to develop uric acid biosensor based on polydopamine/polypyrole (PDA/PPY) composite decorated on glassy carbon electrode. The conductive polymer PDA/PPY was electrochemically synthesized and casted on glassy carbon electrode (GCE). The synthesized PDA/PPY was characterize… Show more

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Cited by 55 publications
(33 citation statements)
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“…Scan rate gives vital information on the electrochemical behavior of an analyte on the electrode surface [ 50 ]. For instance, the scan rate gives information about the diffusivity or absorptivity of the reaction.…”
Section: Resultsmentioning
confidence: 99%
“…Scan rate gives vital information on the electrochemical behavior of an analyte on the electrode surface [ 50 ]. For instance, the scan rate gives information about the diffusivity or absorptivity of the reaction.…”
Section: Resultsmentioning
confidence: 99%
“…As it was mentioned above, uric acid is an electro-active compound that has oxidation potential close to +0.6 (±0.1 V) V vs. Ag/AgCl [ 10 , 12 , 52 ]. Electrochemical methods were used only for uric acid or for simultaneous determination of several target molecules including uric acid in previous studies [ 53 , 54 , 55 , 56 , 57 , 58 ]. For the discussion of interfering molecules, it should be noted that the primarily predicted purpose of the sensor, for example, for dopamine or ascorbic acid [ 59 , 60 ] or any other target molecule detection, in most cases, means the optimized conditions at which the molecules are identified as interfering and analyzed at the optimized conditions of analysis.…”
Section: The Main Interfering Molecules For Uric Acid Determinationmentioning
confidence: 99%
“…A non-enzymatic sensor for sulfite has been developed by Marwani [117], based on polypyrrole-chitosan biocomposite modified glassy carbon electrode.…”
Section: Contaminants and Additivesmentioning
confidence: 99%
“…For instance, polypyrrole is a conducting polymer because of delocalized π electrons enhancing the mobility of ions, polarons, solitons and bipolarons [118]. The electrical conductivity could be further improved including dopants (p-doing) into the polymeric matrix [117]. Chitosan is a natural biopolymer with good biocompatibility and its amine group and hydroxyl moieties could improve hydrogen bonding to the polypyrrole backbone [117].…”
Section: Contaminants and Additivesmentioning
confidence: 99%
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