Please use this identifier to cite or link to this item: http://nopr.niscpr.res.in/handle/123456789/18191
Title: Comparison of solid state voltammetry and membrane voltammetry: The reduction of 4,4',4",4'" -(21H,23H-porphine-5, 10, 15,20-tetrayl) tetrakis[l-octylpyridinium] tetrabromide immobilised as microcrystalline solid and accumulated into a mesoporous TiO2 phytate membrane
Authors: Marken, Frank
Parkhouse, Susan M
Hoe, Lesley A
McKenzie, Katy J
Mortimer, Roger J
Vickers, Steve J
Rowley, Natalie M
Issue Date: Apr-2003
Publisher: NISCAIR-CSIR, India
Abstract: The tetra-cationic free base porphyrin, 4,4',4",4'" -(21H,23H-porphine-5, 10, 15,20-tetrayl) tetrakis[l-octylpyridinium]4+(PTTO4+) shares the properties of both a long alkyl chain containing molecule with hydrophobic shell and a highly charged water soluble molecule with hydrophilic core. As a result, PTTO4+ is only very sparingly water soluble and tends to aggregate on suitable surfaces. It is shown here that the electrochemical reduction of PTTO4+ in aqueous media can be studied either by 'solid state voltammetry' or by 'membrane voltammetry ' methodology with complementary results. When immobilised by adhering the microcrystalline powder to the surface of a basal plane pyrolytic graphite electrode. PTTO4+ exhibits two separate one electron-one proton reduction responses, which are both coupled to chemical follow-up processes (assumed here is a H-shift reaction). Both reduction responses become reversible at sufficiently high scan rates. In contrast, when accumulated into a TiO2 phytate membrane, PTTO4+ exhibits a chemically reversible 2 electron-2 proton reduction response. Upon increasing of the concentration of PTTO4+ in the membrane or upon increasing the thickness of the membrane more complex voltammetric responses are detected. High local 'concentration' conditions during solid state voltammetry experiments may be regarded as a limiting case of high concentration membrane voltammetry at very thin membranes.
Page(s): 782-788
ISSN: 0975-0975(Online); 0376-4710(Print)
Appears in Collections:IJC-A Vol.42A(04) [April 2003]

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