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  4. Mesoporous indium tin oxide as a novel platform for bioelectronics
 
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2010
Journal Article
Title

Mesoporous indium tin oxide as a novel platform for bioelectronics

Abstract
Stable immobilization and reversible electrochemistry of cytochrome c in a tranparent indium tin oxide film with a well-defined mesoporosity (mpITO) is demonstrated. the transparency and good conductivity, in combination with the large surface area of mpITO, allow the incorporation of a high amount of elelctroactive biomolecules and their electrochemical and spectroscopic investigation. UV/Vis and resonance Raman spectroscopy, in combination with direct protein voltammetry are employed for the characterization of cytochrome c immobilized in the mpITO and reveal no perturbant of the structural of the integrity of the redox protein. The potential of this modified material as a biosensor detection of superoxide anions is also demonstrated.
Author(s)
Frasca, S.
Graberg, T. von
Feng, J.-J.
Thomas, A.
Smarsly, B.M.
Weidinger, I.M.
Scheller, F.W.
Hildebrandt, P.
Wollenberger, U.
Journal
ChemCatChem  
DOI
10.1002/cctc.201000047
Language
English
Fraunhofer-Institut für Biomedizinische Technik IBMT  
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