Tunable electric field enhancement and redox chemistry on TiO2 island films via covalent attachment to Ag or Au nanostructures


Autoria(s): Arumugam , Sivanesan; Ly, K.H.; Adamkiewicz, W.; Stiba, K.; Leimkühler, S.; Weidinger, I.M.
Data(s)

17/05/2013

Resumo

Abstract Ag-TiO2 and Au-TiO2 hybrid electrodes were designed by covalent attachment of TiO2 nanoparticles to Ag or Au electrodes via an organic linker. The optical and electronic properties of these systems were investigated using the cytochrome b5 (Cyt b5) domain of sulfite oxidase, exclusively attached to the TiO2 surface, as a Raman marker and model redox enzyme. Very strong SERR signals of Cyt b 5 were obtained for Ag-supported systems due to plasmonic field enhancement of Ag. Time-resolved surface-enhanced resonance Raman spectroscopic measurements yielded a remarkably fast electron transfer kinetic (k = 60 s -1) of Cyt b5 to Ag. A much lower Raman intensity was observed for Au-supported systems with undefined and slow redox behavior. We explain this phenomenon on the basis of the different potential of zero charge of the two metals that largely influence the electronic properties of the TiO2 island film. © 2013 American Chemical Society.

Identificador

http://eprints.qut.edu.au/78414/

Publicador

American Chemical Society

Relação

http://pubs.acs.org/doi/pdf/10.1021/jp4032578

DOI:10.1021/jp4032578

Arumugam , Sivanesan, Ly, K.H., Adamkiewicz, W., Stiba, K., Leimkühler, S., & Weidinger, I.M. (2013) Tunable electric field enhancement and redox chemistry on TiO2 island films via covalent attachment to Ag or Au nanostructures. The Journal of Physical Chemistry Part C: Nanomaterials and Interfaces and Hard Matter, 117(22), pp. 11866-11872.

Direitos

Copyright © 2013 American Chemical Society

Fonte

School of Chemistry, Physics & Mechanical Engineering; Science & Engineering Faculty

Tipo

Journal Article