Electrochemical nitrite nanosensor developed with amine- and sulphate-functionalised polystyrene latex beads self-assembled on polyaniline

Aniline doped with polyvinyl sulphonate (PV-SO 3 −) was electropolymerised on screen printed carbon (SPCE) and glassy carbon (GCE) electrodes. Then nano-structured polystyrene (PS NP) latex beads functionalised with amine (PS NP-NH 2) and sulphate (PS NP-OSO 3 −) were self-assembled on the modified...

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Veröffentlicht in:Electrochimica acta 2010-05, Vol.55 (14), p.4274-4280
Hauptverfasser: Muchindu, Munkombwe, Waryo, Tesfaye, Arotiba, Omotayo, Kazimierska, Ewa, Morrin, Aoife, Killard, Anthony J., Smyth, Malcolm R., Jahed, Nazeem, Kgarebe, Boitumelo, Baker, Priscilla G.L., Iwuoha, Emmanuel I.
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Sprache:eng
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Zusammenfassung:Aniline doped with polyvinyl sulphonate (PV-SO 3 −) was electropolymerised on screen printed carbon (SPCE) and glassy carbon (GCE) electrodes. Then nano-structured polystyrene (PS NP) latex beads functionalised with amine (PS NP-NH 2) and sulphate (PS NP-OSO 3 −) were self-assembled on the modified SPCE and GCE. The resultant polyaniline nanocomposites (PANI|PS NP-NH 2 or PANI|PS NP-OSO 3 −) were characterised by cyclic voltammetry (CV), UV–vis spectroscopy and scanning electron microscopy (SEM). Brown–Anson analysis of the multi-scan rate CV responses of the various PANI films gave surface concentrations of the order of 10 −8 mol cm −2. UV–vis spectra of the PANI films dissolved in dimethyl sulphoxide showed typical strong absorbance maxima at 480 and 740 nm associated with benzenoid π–π* transition and quinoid excitons of polyaniline, respectively. The SEM images of the PANI nanocomposite films showed cauliflower-like structures that are
ISSN:0013-4686
1873-3859
DOI:10.1016/j.electacta.2009.06.047