2007
DOI: 10.1016/j.snb.2006.09.003
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Redox properties of ferricyanide ion on layer-by-layer deposited poly(glutamic acid) film-coated electrodes and its use for electrocatalytic sensing of ascorbic acid

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Cited by 23 publications
(19 citation statements)
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“…Such thin films are common in thin-film devices because of the wide array of useful polymer types, including biopolymers, such as proteins [36,37], polysaccharides [38,39] and polypeptides [40]. LbL film-modified devices are used in biosensors [41], ion-selective membranes [42], stimuli-sensitive systems [43] and drug delivery [44].…”
Section: Fc-containing Thin Filmsmentioning
confidence: 99%
“…Such thin films are common in thin-film devices because of the wide array of useful polymer types, including biopolymers, such as proteins [36,37], polysaccharides [38,39] and polypeptides [40]. LbL film-modified devices are used in biosensors [41], ion-selective membranes [42], stimuli-sensitive systems [43] and drug delivery [44].…”
Section: Fc-containing Thin Filmsmentioning
confidence: 99%
“…(i) The origin of the internal charge compensation, which can be either of intrinsic [40,41] or of extrinsic nature [5,42,43], meaning that electroneutrality in the bulk of the film is due to the quantitative ion pairing between the polycation and the polyanion or to the incorporation of an excess of small electrolytes, respectively. (ii) The understanding of the film growth regime.…”
Section: Introductionmentioning
confidence: 99%
“…Free electro-active molecules can be incorporated into exponentially grown films leading to electroresponsive properties in those films [104][105][106]110,111]. Under an applied potential, oxidation of ferrocyanide ions confined in a polyglutamic acid (PGA)/PAH LbL film, leads to a loss of one charge per molecule.…”
Section: Confinement Of Electro-active Molecules After Film Buildupmentioning
confidence: 99%