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Computer Simulation of the Structure of Porous Electrodes with an Immobilized Enzyme and Nanosized Support Particles
Authors:Yu.?G.?Chirkov  author-information"  >  author-information__contact u-icon-before"  >  mailto:olgayuri@mtu-net.ru"   title="  olgayuri@mtu-net.ru"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author,V.?I.?Rostokin
Affiliation:(1) Frumkin Institute of Electrochemistry, Russian Academy of Sciences, Leninskii pr. 31, Moscow, 119071, Russia;(2) Moscow Institute of Engineering Physics, Kashirskoe sh. 31, Moscow, 117409, Russia
Abstract:The efficiency of the operation of a porous electrode with an immobilized enzyme is defined, in particular, by a lucky structure of its active layer, which can contain nanosized particles of the support. The composites of such a kind are prepared with the aid of methods of colloidal chemistry. The aim of this particular investigation is to perform a computer simulation of processes of coagulation of particles of the support and their possible heterocoagulation with molecules of the enzyme. Algorithms of the formation of nanocomposite structures in solution are suggested. Calculations show that the concentration of the enzyme molecules in the nanocomposite structures cannot exceed a certain critical value. On the other hand, at a fixed value of the concentration of the enzyme molecules, the concentration of the support particles must not fall below a certain threshold quantity, which provides for the passing of current through the active layer. In order for all the enzyme molecules, rather than for a fraction of these, in the composite to take part in the process of bioelectrocatalysis, the concentration of support particles must be increased even higher, to an optimum value.__________Translated from Elektrokhimiya, Vol. 41, No. 6, 2005, pp. 738–747.Original Russian Text Copyright © 2005 by Chirkov, Rostokin.
Keywords:porous electrode  immobilized enzyme  nanoparticles  fractals  percolation  coagulation  heterocoagulation  computer simulation  cluster-cluster aggregation
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