This book provides researchers with a concise overview of the status of thin-film solar cell technology and characterization. Chapters describe material systems and their properties, and then provide an in-depth look at relevant characterization methods and the learning facilitated by each of these.
This book provides researchers with a concise overview of the status of thin-film solar cell technology and characterization. Chapters describe material systems and their properties, and then provide an in-depth look at relevant characterization methods and the learning facilitated by each of these.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
* Chapter 1: Introduction - Motivation of polycrystalline thin-film solar cells * Chapter 2: Patterns in the control of CdTe solar cell performance * Chapter 3: Cu(In,Ga)Se2 and related materials * Chapter 4: Perovskite solar cells * Chapter 5: Photovoltaic device modeling: a multi-scale, multi-physics approach * Chapter 6: Luminescence and thermal imaging of thin-film photovoltaic materials, devices, and modules * Chapter 7: Application of spatially resolved spectroscopy characterization techniques on Cu2ZnSnSe4 solar cells * Chapter 8: Time-resolved photoluminescence characterization of polycrystalline thin-film solar cells * Chapter 9: Fundamentals of electrical material and device spectroscopies applied to thin-film polycrystalline chalcogenide solar cells * Chapter 10: Nanometer-scale characterization of thin-film solar cells by atomic force microscopy-based electrical probes * Chapter 11: STEM characterization of solar cells * Chapter 12: Photoelectron spectroscopy methods in solar cell research * Chapter 13: Time-of-flight secondary-ion mass spectrometry and atom probe tomography * Chapter 14: Solid-state NMR characterization for PV applications * Chapter 15: Summary and outlook
* Chapter 1: Introduction - Motivation of polycrystalline thin-film solar cells * Chapter 2: Patterns in the control of CdTe solar cell performance * Chapter 3: Cu(In,Ga)Se2 and related materials * Chapter 4: Perovskite solar cells * Chapter 5: Photovoltaic device modeling: a multi-scale, multi-physics approach * Chapter 6: Luminescence and thermal imaging of thin-film photovoltaic materials, devices, and modules * Chapter 7: Application of spatially resolved spectroscopy characterization techniques on Cu2ZnSnSe4 solar cells * Chapter 8: Time-resolved photoluminescence characterization of polycrystalline thin-film solar cells * Chapter 9: Fundamentals of electrical material and device spectroscopies applied to thin-film polycrystalline chalcogenide solar cells * Chapter 10: Nanometer-scale characterization of thin-film solar cells by atomic force microscopy-based electrical probes * Chapter 11: STEM characterization of solar cells * Chapter 12: Photoelectron spectroscopy methods in solar cell research * Chapter 13: Time-of-flight secondary-ion mass spectrometry and atom probe tomography * Chapter 14: Solid-state NMR characterization for PV applications * Chapter 15: Summary and outlook
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