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Glassy caibon electrode

Katuppiah C, Devasenathipathy R, Chen SM et al (2015) Fabrication of nickel tetrasulfonated phthalocyanine functionalized multiwalled carbon nanotubes on activated glassy caibon electrode for the detection of dopamine. Electroanalysis... [Pg.132]

George RC, Mugadza T, Khene S, Egharev O, Nyokong T (2011) Porphyrin nanorods modified glassy caibon electrode fra the electrocatalysis of dioxygen, methanol and hydrazine. Electroanalysis 23 1699-1708... [Pg.224]

Coates M, Nyokong T (2013) Characterization of glassy caibon electrodes modified with carbon nanotubes and iron phthalocyanine through grafting and click chemistry. Electrochim Acta 91 158-165... [Pg.267]

Tau P, Nyokong T (2007) Electrocatalytic oxidation of nitrite by tetra-substituted oxotitanium(IV) phthalocyanines adsorbed or polymerised on glassy caibon electrode. J Electroanal Chem 611 10-18... [Pg.312]

Fig. 7 Cyclic voltammogram of 4.5 mM p-nitrophenol in 0.1 M NaOH at (0 bare glassy caibon electrode, (k) fouled bare glassy caibon electrode after rinsing in water, no recovery time allowed, (hi) polymerized nickelhydroxytetraphenoxypyrrolephthalocyanine(poly-Ni(OH)TPhPyPc/GC) electrode before fouling and (iv) fouled poly-Ni(OH)TPhPyPc/GC electrode after rinsing in... Fig. 7 Cyclic voltammogram of 4.5 mM p-nitrophenol in 0.1 M NaOH at (0 bare glassy caibon electrode, (k) fouled bare glassy caibon electrode after rinsing in water, no recovery time allowed, (hi) polymerized nickelhydroxytetraphenoxypyrrolephthalocyanine(poly-Ni(OH)TPhPyPc/GC) electrode before fouling and (iv) fouled poly-Ni(OH)TPhPyPc/GC electrode after rinsing in...
Chaiyasith S, Tangkuaram T, Chaiyasith P (2005) Electrocatalytical of chlorophenoxycaiboxylic acids at a protoporphyrin IX cobalt(ni) chloride modified glassy caibon electrode. J Electroanal Chem 581 104-110... [Pg.342]

The ferrocenyl dendrimers were electrodeposited in their oxidized forms onto the electrode surfaces (platinum, glassy-caibon, and gold) either by controlled potential electrolysis or by repeated cycling between the appropriate anodic and cathodic potential limits therefore the amount of electroactive material electrode-posited can be controlled with the electrolysis time or the number of scans. The electrochemical behavior of films of the polyfeirocenyl dendrimers was studied by cyclic voltammetry in fresh CH2CI2 and CHjCN solutions containing only supporting electrolyte. [Pg.165]

Figure 5.16 CV (top) and DPV (bottom) plots for Fc-GluOH 22 before (solid lines) and after addition of 2mol equivalents of at pH 6.8, 0.2M NaClO, glassy caibon working eiectrode, Pt counter electrode, and Ag/AgCl reference electrode. For the CV studies the scan rate was lOOmV/s whiles for the DPV experiments a scan rate of 20mV/s and pulse amphtude of 50mV was used... Figure 5.16 CV (top) and DPV (bottom) plots for Fc-GluOH 22 before (solid lines) and after addition of 2mol equivalents of at pH 6.8, 0.2M NaClO, glassy caibon working eiectrode, Pt counter electrode, and Ag/AgCl reference electrode. For the CV studies the scan rate was lOOmV/s whiles for the DPV experiments a scan rate of 20mV/s and pulse amphtude of 50mV was used...
The electrocatalytic activity of ORR on chalcogenides has been performed under hydrodynamic and temperature conditions using the rotating disk electrode (RDE) technique. We recall that dispersed catalysts either as non-supported or as supported on carbon have been prior prepared in form of inks, which are ahqnoted onto a well geometrically defined substrate, such as glassy caibon and/or gold disks. ... [Pg.270]

Electrodes. The electrodes were glassy carbon discs, 3mm in diameter (V-10 grade vitreous caibon from Atomergic). Each glassy carbon rod was encased in a teflon cylinder wifli a deaerated slow setting epoxy (Armstrong) and the cylinder was fitted on an AFMSRX rotator (Pine Instruments). [Pg.308]


See other pages where Glassy caibon electrode is mentioned: [Pg.432]    [Pg.413]    [Pg.60]    [Pg.60]    [Pg.70]    [Pg.104]   


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