Adsorption of 2,2′-Azino-Bis(3-ethylbenzothiazoline-6-sulfonate) on Multiwalled Carbon Nanotubes-Silicate Film: Application to Bioelectrocatalytic Dioxygen Reduction

Адсорбция 2,2'-азино-бис(3-этилбензотиазолин-6-сульфоната) на плёнке кремнезема с многослойными углеродными нанотрубками: применение для биоэлектрокаталитического восстановления диоксида кислорода
Paweł J. Kulesza, Jerzy Rogalski, Joanna Niedziółka‐Jönsson, Marcin Opałło, Martin Jönsson‐Niedziółka, Katarzyna Szot, Katarzyna Karnicka
2009-02-28

2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonate)adsorptionlaccase bioelectrocatalysismultiwalled carbon nanotubessol-gel silicate film
Multiwalled carbon nanotubes were entrapped in sol-gel processed hydrophilic silicate thin film on tin-doped indium oxide support. Microscopic images show that the nanotubes form large agglomerates of largely separated nanotubes covered by silicate film. The measurements of capacitive current prove that approximately 10% of them remain electrochemically active. The surface confined cyclic voltammetry indicate adsorption of 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonate) on this material. The oxidation charge estimated after the adsorption saturated shows that this compound is adsorbed on almost all the surface of the immobilised carbon nanotubes. After further modification of the electrode with extracellular laccase from Cerrena unicolor electrocatalytic dioxygen reduction is observed. The immobilised enzyme exhibits catalytic action whereas 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonate) adsorbed on carbon nanotubes serves as electron mediator between protein and electrode. Bioelectrocatalysis is also observed in the absence of adsorbed mediator but the efficiency of the process is approximately one order of magnitude smaller.
1
2,2'-Azino-bis(3-ethylbenzothiazoline-6-sulfonate) (ABTS) adsorbs onto the surface-confined MWCNTs, with oxidation charge indicating coverage of almost the entire nanotube surface.
2
ABTS adsorbed on MWCNTs acts as an electron mediator between the laccase enzyme and the electrode, enhancing bioelectrocatalytic oxygen reduction.
3
Approximately 10% of immobilized MWCNTs remain electrochemically active, as shown by capacitive current measurements.
4
Bioelectrocatalysis of dioxygen reduction occurs without adsorbed ABTS but with approximately one order of magnitude lower efficiency.
5
Extracellular laccase from Cerrena unicolor immobilized on the ABTS-modified MWCNT-silicate electrode catalyzes electrocatalytic dioxygen reduction.
6
Multiwalled carbon nanotubes (MWCNTs) entrapped in sol-gel hydrophilic silicate film on ITO form large agglomerates covered by silicate.

2,2′-Azino-bis(3-ethylbenzothiazoline-6-sulfonate) adsorbed on multiwalled carbon nanotubes embedded in a sol–gel silicate thin film on tin-doped indium oxide electrode

Adsorption coverage and electrochemical role of the adsorbed mediator (ABTS) on the immobilised carbon nanotube/silicate film and its function as an electron mediator facilitating bioelectrocatalytic dioxygen reduction by immobilised laccase (including comparative catalytic efficiency with and without the mediator)

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2009-02-28
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Paweł J. Kulesza
Jerzy Rogalski
Joanna Niedziółka‐Jönsson
Marcin Opałło
Martin Jönsson‐Niedziółka
Katarzyna Szot
Katarzyna Karnicka
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