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Summary of non-ohmic junctions. After Ricaud,
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1. Ecole Doctorale - Energie Session 3.
3. Photoelectrochemical effect at a semiconductor - redox electrolyte interface.
4. Regenerative photoelectrochemical cells
5. The semiconductor /electrolyte interfaceRelation to Fermi level
6. The photoelectrochemical ideal-production of hydrogen!Not yet directly achieved - why?
7. Semiconductor - electrolyte junctions - photoelectrochemistry
9. Photoelectrochemical processes in a dye-sensitized solar cell.
11. Molecular engineering of dyes.
12. Tetradentate polypyridyl ligand
13. Optical absorption of titania -development of sensitizing dyes.
14. Advanced ruthenium complex dye structure -the amphiphilic dye Z-907 (cis-Ru(H2dcbpy)(dnbpy)(NCS)2, where H2dcbpy = 4,4•-dicarboxylic acid-2,2•-bipyridine and dnbpy = 4,4•-dinonyl-2,2•-bipyridine.
15. Design features of the EPFL dye Z-907:
16. Photochemical energetics and structure of DSC
17. Why use gel electrolytes?
18. SEM image of a mesoporous titania film.
19. Hydrothermal growth of nanostructured titania
20. What it looks like -
21. Characteristics of a dye-sensitised cell under light
22. Use of the AM 0 solar spectrum by a silicon solar cell