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Perovskite Solar Cells | Dauskardt Group

dauskardt.stanford.edu · 1,377 words · saved by 1 readers

The remarkable optoelectronic properties of hybrid organolead-halide perovskite materials hold tremendous promise for use as the active layer in low-cost solar cells and have attracted extraordinary attention for next-generation PV. For the promises of perovskite photovoltaics to be realized, however, dramatic advances in the understanding of their thermomechanical properties along with the development of high-throughput, low-cost, open-air processes; advanced packaging and characterization techniques; and material and solar cell design strategies to address their mechanical and chemical instabilities are required. Figure 1: 225 cm2 encapsulated open-air spray-deposited perovskite module. Our program focuses on the development of high-throughput, low-cost processes for perovskite photovoltaics. We employ high-throughput deposition techniques such as spray coating alongside a suite of atmospheric pressure rapid curing techniques including low-temperature plasma and near-infrared rapid t

Perovskite Solar Cells | Dauskardt Group Perovskite Solar Cells Main navigation Skip Secondary Navigation Main content start Overview The remarkable optoelectronic properties of hybrid organolead-halide perovskite materials hold tremendous promise for use as the active layer in low-cost solar cells and have attracted extraordinary attention for next-generation PV. For the promises of perovskite photovoltaics to be realized, however, dramatic advances in the understanding of their thermomechanical properties along with the development of high-throughput, low-cost, open-air processes; advanced p

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