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Gewählte Publikation:

Shao, ML; Guschin, DA; Kawah, Z; Beyl, Y; Stoica, L; Ludwig, R; Schuhmann, W; Chen, XX.
(2014): Cellobiose dehydrogenase entrapped within specifically designed Os-complex modified electrodeposition polymers as potential anodes for biofuel cells
ELECTROCHIM ACTA. 2014; 128: 318-325. FullText FullText_BOKU

Abstract:
Electron-transfer pathways between cellobiose dehydrogenase from Myriococcum thermophilum (MtCDH) and the related flavodehydrogenase domain (FAD-MtCDH) and electrodes were evaluated using specifically designed Os-complex modified electrodeposition paints (EDPs). The properties of the Os-complex modified EDPs were varied by variation of the monomer composition, the coordination sphere of the polymer-bound Os-complexes, and the length and flexibility of the spacer chain between Os complex and polymer backbone. The MtCDH-to-EDP weight ratio, the pH value, as well as the operational temperature have been optimized. (C) 2013 Elsevier Ltd. All rights reserved.
Autor/innen der BOKU Wien:
Ludwig Roland
BOKU Gendermonitor:


Find related publications in this database (Keywords)
cellobiose dehydrogenase
mediated electron transfer
Os-complex modified electrodeposition paint
biofuel cell
redox polymer
polymer-modified electrode


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