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1
Intro
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Research 2001 to 2012
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1 Solar Cell Reports
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Solid-state perovskite sensitized solar cells
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First devices
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Charge Transport
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Diffusion length Estimation
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Dual source evaporation
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Efficient Planar Heterojunction Solar Cells
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Subtleties of solution processing
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Efficient stable sustained output
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Semi-transparent solar cell operation
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Solar Cell results
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Water Stability
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Perovskite Module Component Costs
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Operating voltage
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Tuning the band gap with mixed anions
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Low energetic disorder
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Electroluminescence vs Absorption onset.
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Grain boundaries in thin film solar cells
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Commercialisation: Oxford PV Ltd
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Oxford PV Ltd.
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Future direction for perovskite solar cells
Description:
Explore the evolution of perovskite solar cells from nanostructured to thin-film devices in this comprehensive talk by Henry Snaith, University of Oxford. Delve into the development of efficient, low-cost solar cell materials that can be processed using solution-based techniques. Learn about the unique properties of organic-inorganic metal halide perovskite absorbers and their potential to revolutionize photovoltaic technology. Discover the latest research findings, including device-based and spectroscopic investigations, that explain why these materials perform so well. Gain insights into the future prospects of perovskite solar cells, including improvements in efficiency, stability, and commercialization efforts. Examine topics such as charge transport, diffusion length estimation, dual source evaporation, planar heterojunction solar cells, water stability, and tuning the band gap with mixed anions. Understand the advantages of perovskite solar cells over previous generations of photovoltaic technology and their potential impact on the future of solar energy. Read more

From Nanostructured to Thin-Film Perovskite Solar Cells

Materials Research Society
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