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Titlebook: Emerging Strategies to Reduce Transmission and Thermalization Losses in Solar Cells; Redefining the Limit Jonas Sandby Lissau,Morten Madsen

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书目名称Emerging Strategies to Reduce Transmission and Thermalization Losses in Solar Cells
副标题Redefining the Limit
编辑Jonas Sandby Lissau,Morten Madsen
视频video
概述Describes emerging strategies to circumvent transmission and thermalization losses in solar cells.Discusses state-of-the-art implementations of various new strategies, i.e. singlet fission, photon upc
图书封面Titlebook: Emerging Strategies to Reduce Transmission and Thermalization Losses in Solar Cells; Redefining the Limit Jonas Sandby Lissau,Morten Madsen
描述.The book describes emerging strategies to circumvent transmission and thermalization losses in solar cells, and thereby redefine the limits of solar power conversion efficiency. These strategies include the use of organic molecules and rare-earth metal materials. Approaches to augment the efficiency of these processes via near-field enhancement are described as well. This book includes a discussion of state-of-the-art implementations of these emerging strategies in solar cells, both internally, as in molecular intermediate band and charge carrier multiplication, and externally, such as photon up- and down-conversion. Tools for characterization are also provided.  Written by leading researchers in the field, this book can be useful to both beginners and experienced researchers in solar energy..
出版日期Book 2022
关键词Solar Cells; Photophysics; Rare Earth Metals; Thermalization losses; Singlet fission; Triplet fusion; Impl
版次1
doihttps://doi.org/10.1007/978-3-030-70358-5
isbn_softcover978-3-030-70360-8
isbn_ebook978-3-030-70358-5
copyrightSpringer Nature Switzerland AG 2022
The information of publication is updating

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Molecular Oxygen in Photoresponsive Organic Materialses) can react with O.(a.Δ.) to form peroxides, which likewise are reactive and propagate disruption. The quenching of an excited-state organic component by O.(X.Σ..) also points to other ways in which oxygen can influence device performance. For example, the oxygen-mediated deactivation of comparati
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Protective Strategies Toward Long-Term Operation of Annihilation Photon Energy Upconversioneously to accelerated aging of the upconversion device. The generation of singlet oxygen is much more harmful for the studied object, if the process of TTA-UC is used as a sensing mechanism for probing of the local temperature/local oxygen content in cell cultures. In this chapter, the development o
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harge carrier multiplication, and externally, such as photon up- and down-conversion. Tools for characterization are also provided.  Written by leading researchers in the field, this book can be useful to both beginners and experienced researchers in solar energy..978-3-030-70360-8978-3-030-70358-5
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