2014
DOI: 10.1016/j.electacta.2013.10.023
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Improved l-cysteine electrocatalysis through a sequential drop dry technique using multi-walled carbon nanotubes and cobalt tetraaminophthalocyanine conjugates

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Cited by 34 publications
(15 citation statements)
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“…The LOD of detection for poly-CoTAPc-MWCNT and poly-CoPyPc-MWCNT were found (using the 3σ notation) to be 1.74 × 10 −8 M and 3.55 × 10 −8 M, respectively. These values are well below the LOD observed on monomeric CoTAPc mixed with MWCNT (2.8 × 10 −7 M [11]). Also the LOD for mixed CoPyPc-MWCNTs is less favourable than for poly-CoPyPc (Table 2).…”
Section: Chronoamperometry Studiesmentioning
confidence: 49%
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“…The LOD of detection for poly-CoTAPc-MWCNT and poly-CoPyPc-MWCNT were found (using the 3σ notation) to be 1.74 × 10 −8 M and 3.55 × 10 −8 M, respectively. These values are well below the LOD observed on monomeric CoTAPc mixed with MWCNT (2.8 × 10 −7 M [11]). Also the LOD for mixed CoPyPc-MWCNTs is less favourable than for poly-CoPyPc (Table 2).…”
Section: Chronoamperometry Studiesmentioning
confidence: 49%
“…The peaks for L-cysteine oxidation on poly-CoTAPc-MWCNT and poly-CoPyPc-MWCNT were observed at approximately 0.40 and 0.55 V, respectively. The potential for the oxidation of L-cysteine in pH 4 buffer on mixed-CoTAPc-MWCNT was reported to be 0.63 V [11] and 0.83 V for mixed-CoPyPc-MWCNTs (Fig. 9b).…”
Section: Rde Kinetic Studies For Electrooxidation Of L-cysteinementioning
confidence: 95%
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