Frontiers in Energy Research · 2022 · 32 citations · 15 references
Hydrogen Energy TechnologyEngineeringEnergy ConversionPhoto-electrochemical CellGreen HydrogenChemistryPhotoelectrochemistryPhotovoltaicsChemical EngineeringMeasure Solar-to-hydrogen EfficiencyPhotocatalysisCharge ExtractionSolar Energy UtilisationPhotochemistrySolar PowerPhotoelectric MeasurementPec Water SplittingHydrogenEnergyPhotoelectrocatalysisBest PracticesWater SplittingPec EfficiencyEnvironmental Engineeringη SthSolar Cell Materials
Photoelectrochemical (PEC) water splitting, which utilizes sunlight and water to produce hydrogen fuel, is potentially one of the most sustainable routes to clean energy. One challenge to success is that, to date, similar materials and devices measured in different labs or by different operators lead to quantitatively different results, due to the lack of accepted standard operating procedures and established protocols for PEC efficiency testing. With the aim of disseminating good practices within the PEC community, we provide a vetted protocol that describes how to prepare integrated components and accurately measure their solar-to-hydrogen (STH) efficiency (η STH ). This protocol provides details on electrode fabrication, η STH test device assembly, light source calibration, hydrogen evolution measurement, and initial material qualification by photocurrent measurements under monochromatic and broadband illumination. Common pitfalls in translating experimental results from any lab to an accurate STH efficiency under an AM1.5G reference spectrum are discussed. A III–V tandem photocathode is used to exemplify the process, though with small modifications, the protocol can be applied to photoanodes as well. Dissemination of PEC best practices will help those approaching the field and provide guidance for comparing the results obtained at different lab sites by different groups.
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Zhebo Chen, Thomas F. Jaramillo, Todd G. Deutsch et al. · Journal of materials research/Pratt's guide to venture capital sources · 2009 · 1.2K citations
Materials Science, Hydrogen Energy Technology, Chemical Engineering +13
Translation of device performance measurements to reference conditions
C.R. Osterwald · Solar Cells · 1986 · 246 citations