2010
DOI: 10.1016/j.talanta.2009.09.054
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Cu nanoparticles incorporated polypyrrole modified GCE for sensitive simultaneous determination of dopamine and uric acid

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Cited by 127 publications
(60 citation statements)
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“…However, electrochemical determination of these species based on anodic oxidation suffers from oxidation peaks overlapping at solid electrodes [2,3]. Till now, various modified electrodes have been attempted to solve the problems encountered in simultaneous determination of AA, DA and UA, for example, PDDA modified graphite electrode [4], amorphous silica gel modified carbon paste electrode [5], carbon-nanofiber modified carbon paste electrode [6], poly(acrylic acid)-multiwalled carbon-nanotubes composite-coated glassy-carbon disk electrode [7] and natural antibiotic lasalocid A cast glassy carbon electrode [8], etc.…”
Section: Introductionmentioning
confidence: 99%
“…However, electrochemical determination of these species based on anodic oxidation suffers from oxidation peaks overlapping at solid electrodes [2,3]. Till now, various modified electrodes have been attempted to solve the problems encountered in simultaneous determination of AA, DA and UA, for example, PDDA modified graphite electrode [4], amorphous silica gel modified carbon paste electrode [5], carbon-nanofiber modified carbon paste electrode [6], poly(acrylic acid)-multiwalled carbon-nanotubes composite-coated glassy-carbon disk electrode [7] and natural antibiotic lasalocid A cast glassy carbon electrode [8], etc.…”
Section: Introductionmentioning
confidence: 99%
“…Very recently, we reported the electrochemical preparation of Cu nanoparticles incorporated polypyrrole modified GCE and its applications to the sensitive and selective simultaneous determination of DA and UA [30].…”
Section: Introductionmentioning
confidence: 99%
“…Recent research highlights the interest in simultaneously quantifying physiologically relevant compounds such as uric acid, ascorbic acid and/or catecholamines [165][166][167]. A large body of literature describes the production of a variety of sensors with multi-analyte sensing capabilities, exploiting a variety of nanomaterials including CNTs [168][169][170], individual nanoparticles [171] and polymer nanocomposites [172,173] The electronic nose or tongue is an analytical instrument comprising an array of chemical sensors with partial specificity or cross-sensitivity to different components of a mixture/compound, and an appropriate method of pattern recognition and/or multivariate calibration for the data processing. They can quantitatively differentiate between the composition of complex liquids/gases.…”
Section: Multi-analyte Detectionmentioning
confidence: 99%