ChemPhysChem · 2014 · 22 citations · 34 references
EngineeringNanoporous MaterialInorganic PhotochemistryEnergy ConversionOrganic Solar CellPhotoanode ModificationPhoto-electrochemical CellChemistryPhotoelectrochemistryBulky Redox MediatorsPhotovoltaicsMass TransportChemical EngineeringIonic LiquidsPhotocatalysisMaterials ScienceMass‐transport LimitationsElectrochemical ProcessElectrochemistrySolar Cell Materials
Mass transport has been identified as a limiting problem in the photovoltaic performance of dye-sensitized solar cells based on electrolytes consisting of ionic liquids or cobalt complexes. A mixed TiO2 macroporous-mesoporous morphology employed as photoanode is demonstrated to assist the diffusion of electrolytes with higher viscosity or consisting of bulky redox mediators, such as cobalt di-tert-butyl bipyridine [Co(dtb)3](2+/3+). This morphology with large pores improves the non-linearity of photocurrent response to light intensity indicating better diffusion. The incorporated sub-micrometer pores also reduce recombination and decrease diffusion resistance, as revealed by electrochemical impedance spectroscopy.
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Aswani Yella, Hsuan‐Wei Lee, Hoi Nok Tsao et al. · Science · 2011 · 5.9K citations · Full text
The renaissance of dye-sensitized solar cells
Brian E. Hardin, Henry J. Snaith, Michael D. McGehee · Nature Photonics · 2012 · 1.3K citations