Charge-transfer dynamics at the dye–semiconductor interface of photocathodes for solar energy applications

Author:

Black Fiona A.1234,Wood Christopher J.1564,Ngwerume Simbarashe1564,Summers Gareth H.1234,Clark Ian P.7891011,Towrie Michael7891011,Camp Jason E.156412,Gibson Elizabeth A.12341

Affiliation:

1. School of Chemistry

2. Newcastle University

3. Newcastle Upon Tyne

4. UK

5. The University of Nottingham

6. Nottingham

7. Central Laser Facility

8. Research Complex at Harwell

9. Science and Technology Facilities Council

10. Rutherford Appleton Laboratory

11. Didcot

12. Department of Chemical Sciences

Abstract

This article describes a comparison between the photophysical properties of two charge-transfer dyes adsorbed onto NiO via two different binding moieties. Transient spectroscopy measurements suggest that the structure of the anchoring group affects both the rate of charge recombination between the dye and NiO surface and the rate of dye regeneration by an iodide/triiodide redox couple. This is consistent with the performance of the dyes in p-type dye sensitised solar cells. A key finding was that the recombination rate differed in the presence of the redox couple. These results have important implications on the study of electron transfer at dye|semiconductor interfaces for solar energy applications.

Funder

Engineering and Physical Sciences Research Council

Royal Society

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry

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