Thermodynamic aspects of ion intercalation in [K.sub.h][Fe.sub.k][[Fe[[(CN).sub.6].sub.l].m[H.sub.2]O compounds: Application to the Everit's salt/Prussian blue transition
Article Abstract:
The thermodynamic analysis of the [K.sup.} reversible processes for ion exchanges in [K.sub.h][Fe.sub.k][[Fe[[(CN).sub.6].sub.l]*m[H.sub.2]O host compounds (Prussian blue) is presented. The fact that the simple model like the lattice-gas model used in analysis could be applied to [K.sup.} ion intercalation supports the idea that there is no interaction between the guest and the host material at more anodic potentials than 0.20 V with respect to the saturated calomel reference electrode, at least for low concentrations of [K.sup.}.
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2006
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Kinetic aspects of ion exchanges in [K.sub.h][[Fe.sub.k][[Fe[(CN).sub.6].sub.l].m[H.sub.2]O compounds: A combined electrical and mass transfer functions approach
Article Abstract:
The kinetic aspects involved in the mechanism of interplay between electron and ions for [K.sub.h][Fe.sub.k][[Fe[[(CN).sub.6].sub.l].m[H.sub.2]O (prussian blue) host materials were quantified and developed. The results indicate that the high prominence of the [K.sup.} exchange observed in the voltammetric responses has a kinetic origin and is not related to the amount of sites available for intercalation/deintercalation of the ions.
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2006
User Contributions:
Comment about this article or add new information about this topic:
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