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  2. N-heterocyclic carbene IrCp*LX₂ molecular water oxidation catalysis; mechanistic insights and immobilization strategies

N-heterocyclic carbene IrCp*LX₂ molecular water oxidation catalysis; mechanistic insights and immobilization strategies

Open Access
Authors
  • J.M. Koelewijn
Supervisors
  • J.N.H. Reek
Cosupervisors
  • R.J. Detz
Award date 29-03-2016
ISBN
  • 9789402800678
Number of pages 200
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
Document type PhD thesis
Note Research conducted at: Universiteit van Amsterdam
Language English
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Summary for UvA-DARE
Thesis (complete)
Front matter
Chapter 1: The artificial leaf; a potential route towards sustainable energy applications
Chapter 2: Reaction progress kinetic analysis as tool to reveal ligand effects in Ce(IV)-driven IrCp*LX₂ catalyzed water oxidation
Chapter 3: Photooxidation of a NHC IrCp*Cl₂ water oxidation catalyst by a Pt(II)-porphyrin sensitizer co-immobilized on FTO/TiO₂ photoanodes. Towards photodriven electrocatalytic oxidation of H₂O
Chapter 4: Anode preparation strategies for the electrocatalytic oxidation of water based on strong MWCNT/Pyr⁺ interactions in aqueous solutions
Chapter 5: Application of FTO/MWCNT/MxOy composite anodes prepared via electrophoretic deposition using sodium 1-pyrene sulphonate. Towards optimization of charge carrier transport in WOC/dye sensitized photoanodes
Chapter 6: Oxidized porous silicon as a mesoporous support for an iridium based molecular water oxidation catalyst
Summary / Samenvatting
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