Matches in SemOpenAlex for { <https://semopenalex.org/work/W2014787279> ?p ?o ?g. }
- W2014787279 endingPage "3524" @default.
- W2014787279 startingPage "3511" @default.
- W2014787279 abstract "Abstract This work reports the electrochemical detection of catechol (10 −4 to 10 −6 M) in the presence of ascorbic acid (10 −4 to 10 −6 M) using dual-band poly(3-methylthiophene) (P3MT) electrode flow-injection amperometry without prior separation. The selectivity involved in this method is based on the differences in electrochemical behavior of catechol and ascorbic acid. A variety of dual-band Pt, Au, glassy carbon, and P3MT electrodes were constructed and used as the electrochemical detector. The upstream electrode of the series dual-band electrode unit is used for detection of catechol and ascorbic acid and the downstream electrode for detection of the oxidized catechol. The band dimensions range from 0.1×2.5 to 1×5.5 mm with the interelectrode gaps varying from 0.1 to 0.5 mm. Although this method is effective for dilute solutions of catechol ( −5 M) in the presence of ascorbic acid ( −5 M) under both neutral and acidic conditions, it is not efficient for more concentrated mixtures (>10 −5 M) unless the measurements are made under acidic conditions such as at pH 1.6. A negative deviation from the ideal calibration curve of the oxidized catechol reduction is found in the more concentrated mixtures (>10 −5 M) at physiological pH 7.4. Charge–dipole interaction and hydrogen bonding between the oxidized products of catechol and ascorbic acid in the concentrated neutral solutions are proposed to explain the suppression of the current signals. Variation of the flow rates from 0.5 to 3.0 ml/min has no effect on the performance of the detector. The dual-band P3MT electrode has less positive oxidation potentials for catechol and ascorbic acid oxidation compared to the bare Pt, Au, and glassy carbon electrodes because of the catalytic activity of the P3MT electrode surface. Dual-band P3MT as well as glassy carbon electrodes have the best (highest) collection efficiency for catechol detection. The collection efficiency also remains constant when the interelectrode gaps vary from 0.1 to 0.5 mm." @default.
- W2014787279 created "2016-06-24" @default.
- W2014787279 creator A5002824920 @default.
- W2014787279 creator A5033799057 @default.
- W2014787279 creator A5033914362 @default.
- W2014787279 creator A5059679550 @default.
- W2014787279 creator A5069849278 @default.
- W2014787279 creator A5070783960 @default.
- W2014787279 creator A5072308648 @default.
- W2014787279 creator A5081495912 @default.
- W2014787279 date "1998-07-01" @default.
- W2014787279 modified "2023-09-27" @default.
- W2014787279 title "Flow injection amperometric detection of catechol using dual-band poly(3-methylthiophene) electrodes" @default.
- W2014787279 cites W1963868166 @default.
- W2014787279 cites W1971390929 @default.
- W2014787279 cites W1976094008 @default.
- W2014787279 cites W1981423584 @default.
- W2014787279 cites W1984206902 @default.
- W2014787279 cites W1984902953 @default.
- W2014787279 cites W1985803034 @default.
- W2014787279 cites W1988512746 @default.
- W2014787279 cites W1989253091 @default.
- W2014787279 cites W1989769266 @default.
- W2014787279 cites W1994418712 @default.
- W2014787279 cites W2023036835 @default.
- W2014787279 cites W2023873312 @default.
- W2014787279 cites W2025959252 @default.
- W2014787279 cites W2027191799 @default.
- W2014787279 cites W2031698980 @default.
- W2014787279 cites W2035859963 @default.
- W2014787279 cites W2040715715 @default.
- W2014787279 cites W2046664354 @default.
- W2014787279 cites W2047394211 @default.
- W2014787279 cites W2050915271 @default.
- W2014787279 cites W2052860127 @default.
- W2014787279 cites W2065542744 @default.
- W2014787279 cites W2072255806 @default.
- W2014787279 cites W2075825142 @default.
- W2014787279 cites W2081702897 @default.
- W2014787279 cites W2083315711 @default.
- W2014787279 cites W2083530550 @default.
- W2014787279 cites W2084006401 @default.
- W2014787279 cites W2094644392 @default.
- W2014787279 cites W2094924666 @default.
- W2014787279 cites W2156574588 @default.
- W2014787279 cites W2503099246 @default.
- W2014787279 cites W4253717727 @default.
- W2014787279 doi "https://doi.org/10.1016/s0013-4686(98)00099-1" @default.
- W2014787279 hasPublicationYear "1998" @default.
- W2014787279 type Work @default.
- W2014787279 sameAs 2014787279 @default.
- W2014787279 citedByCount "13" @default.
- W2014787279 countsByYear W20147872792012 @default.
- W2014787279 countsByYear W20147872792013 @default.
- W2014787279 countsByYear W20147872792018 @default.
- W2014787279 countsByYear W20147872792019 @default.
- W2014787279 crossrefType "journal-article" @default.
- W2014787279 hasAuthorship W2014787279A5002824920 @default.
- W2014787279 hasAuthorship W2014787279A5033799057 @default.
- W2014787279 hasAuthorship W2014787279A5033914362 @default.
- W2014787279 hasAuthorship W2014787279A5059679550 @default.
- W2014787279 hasAuthorship W2014787279A5069849278 @default.
- W2014787279 hasAuthorship W2014787279A5070783960 @default.
- W2014787279 hasAuthorship W2014787279A5072308648 @default.
- W2014787279 hasAuthorship W2014787279A5081495912 @default.
- W2014787279 hasConcept C113196181 @default.
- W2014787279 hasConcept C119128265 @default.
- W2014787279 hasConcept C121332964 @default.
- W2014787279 hasConcept C124952713 @default.
- W2014787279 hasConcept C139369640 @default.
- W2014787279 hasConcept C142362112 @default.
- W2014787279 hasConcept C147789679 @default.
- W2014787279 hasConcept C17525397 @default.
- W2014787279 hasConcept C178790620 @default.
- W2014787279 hasConcept C185592680 @default.
- W2014787279 hasConcept C192562407 @default.
- W2014787279 hasConcept C2777713698 @default.
- W2014787279 hasConcept C2780980858 @default.
- W2014787279 hasConcept C29771615 @default.
- W2014787279 hasConcept C38349280 @default.
- W2014787279 hasConcept C43617362 @default.
- W2014787279 hasConcept C52859227 @default.
- W2014787279 hasConcept C57879066 @default.
- W2014787279 hasConceptScore W2014787279C113196181 @default.
- W2014787279 hasConceptScore W2014787279C119128265 @default.
- W2014787279 hasConceptScore W2014787279C121332964 @default.
- W2014787279 hasConceptScore W2014787279C124952713 @default.
- W2014787279 hasConceptScore W2014787279C139369640 @default.
- W2014787279 hasConceptScore W2014787279C142362112 @default.
- W2014787279 hasConceptScore W2014787279C147789679 @default.
- W2014787279 hasConceptScore W2014787279C17525397 @default.
- W2014787279 hasConceptScore W2014787279C178790620 @default.
- W2014787279 hasConceptScore W2014787279C185592680 @default.
- W2014787279 hasConceptScore W2014787279C192562407 @default.
- W2014787279 hasConceptScore W2014787279C2777713698 @default.
- W2014787279 hasConceptScore W2014787279C2780980858 @default.
- W2014787279 hasConceptScore W2014787279C29771615 @default.
- W2014787279 hasConceptScore W2014787279C38349280 @default.