Publication | Open Access
Tuning the Charge Carriers Migration in Epitaxial BaTiO<sub>3</sub> Thin-Film Photoanodes
17
Citations
32
References
2020
Year
EngineeringPhotoanode EfficiencySolar Water SplittingCharge Carriers MigrationPhoto-electrochemical CellChemistryCharge TransportPhotoelectrochemistryChemical EngineeringFerroelectric ApplicationPhotocatalysisCharge SeparationEpitaxial GrowthCharge Carrier TransportMaterials ScienceElectrical EngineeringEpitaxial Ferroelectric LayersWater SplittingElectrochemistryApplied PhysicsThin Films
We studied the growth of epitaxial ferroelectric layers of BaTiO3/Pt(001) in the framework of solar water splitting. The stoichiometry, that is, the Ti/Ba ratio, appears as a crucial parameter not only for the crystallographic structure but also for the photocurrent generation when the sample is used as a photoanode. We established an electrochemical poling method using a modulated potential, without altering the sample to control the electric polarization. Importantly, we show that the photoanode efficiency is improved when the polarization of the film is oriented toward the substrate. We demonstrate that this improvement is only due to the electrical field created by screening charges, which allows the separation of photogenerated charges.
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