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  4. Beyond vibrationally mediated electron transfer: interfacial charge injection on a sub-10-fs time scale
 
conference paper

Beyond vibrationally mediated electron transfer: interfacial charge injection on a sub-10-fs time scale

Huber, Robert
•
Moser, Jacques-Edouard  
•
Wachtveitl, Josef
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2003
Physical Chemistry of Interfaces and Nanomaterials II
Optical Science and Technology, SPIE'S 48th Annual Meeting

The electron transfer (ET) from organic dye molecules to semiconductor-colloidal systems is characterized by a special energetic situation with a charge transfer reaction from a system of discrete donor levels to a continuum of acceptor states. If these systems show a strong electronic coupling they are amongst the fastest known ET systems with transfer times of less than 10 fs. In the first part a detailed discussion of the direct observation of an ET reaction with a time constant of about 6 fs will be given, with an accompanying argumentation concerning possible artifacts or other interfering signal contributions. In a second part we will try to give a simple picture for the scenario of such superfast ET reactions and one main focus will be the discussion of electronic dephasing and its consequences for the ET reaction. We show that the actual ET process can be understood as a kind of dispersion process of the initially located electron into the colloid representing a real motion of charge density from the alizarin to the colloid.

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Type
conference paper
DOI
10.1117/12.506722
Author(s)
Huber, Robert
Moser, Jacques-Edouard  
Wachtveitl, Josef
Grätzel, Michaël  
Date Issued

2003

Published in
Physical Chemistry of Interfaces and Nanomaterials II
Series title/Series vol.

SPIE Proceedings; 5223

Start page

121

End page

131

Subjects

electron transfer

•

ultrafast

•

femtosecond

•

dye

•

semiconductor

•

titanium dioxide

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
GR-MO  
LPI  
Event nameEvent placeEvent date
Optical Science and Technology, SPIE'S 48th Annual Meeting

San Diego, California, United States

3-8 August 2003

Available on Infoscience
July 1, 2011
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/69292
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