A MICROSCOPIC MODEL OF ELECTRON-TRANSFER AT ELECTROACTIVE SITES OF MOLECULAR DIMENSIONS FOR REDUCTION OF CYTOCHROME-C AT BASAL-PLANE AND EDGE-PLANE GRAPHITE-ELECTRODES
A microscopic model of electron transfer, which assumes that electron transfer occurs only after radial diffusion to oxygen-functionalized sites of molecular dimension in size, has been developed to explain the electrochemical reduction of horse heart cytochrome c at graphite electrodes. By use of t...
Main Authors: | Armstrong, F, Bond, A, Hill, H, Psalti, I, Zoski, C |
---|---|
Format: | Journal article |
Language: | English |
Published: |
1989
|
Similar Items
-
ELECTROCHEMISTRY OF CYTOCHROME-C, PLASTOCYANIN, AND FERREDOXIN AT EDGE-PLANE AND BASAL-PLANE GRAPHITE-ELECTRODES INTERPRETED VIA A MODEL BASED ON ELECTRON-TRANSFER AT ELECTROACTIVE SITES OF MICROSCOPIC DIMENSIONS IN SIZE
by: Armstrong, F, et al.
Published: (1989) -
SURFACE SELECTIVITY IN THE DIRECT ELECTROCHEMISTRY OF REDOX PROTEINS - CONTRASTING BEHAVIOR AT EDGE AND BASAL PLANES OF GRAPHITE
by: Armstrong, F, et al.
Published: (1984) -
Edge plane pyrolytic graphite electrodes in electroanalysis: an overview.
by: Banks, C, et al.
Published: (2005) -
Basal plane pyrolytic graphite modified electrodes: comparison of carbon nanotubes and graphite powder as electrocatalysts.
by: Moore, R, et al.
Published: (2004) -
Edge plane pyrolytic graphite electrodes for halide detection in aqueous solutions
by: Lowe, E, et al.
Published: (2005)