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Perovskite Materials and Devices, 2 Volumes


Perovskite Materials and Devices, 2 Volumes


1. Aufl.

von: Liming Ding

250,99 €

Verlag: Wiley-VCH
Format: PDF
Veröffentl.: 02.06.2022
ISBN/EAN: 9783527832538
Sprache: englisch
Anzahl Seiten: 704

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Beschreibungen

<b>Perovskite Materials and Devices</b> <p><b>A comprehensive overview of the important scientific and technological advances in commercialization of this important mineral</b> <p>Perovskite has held much interest for scientists and industrialists, as the mineral is abundantly available in nature. Due to the intriguing and unusual physical properties of perovskite materials—the high-absorption coefficient, low exciton-binding energy, and high dielectric constant, for example—there has been substantial focus on perovskite’s potential in applications. In particular, they have been of great use in sensors and catalyst electrodes, certain types of fuel cells, solar cells, lasers, memory devices, and spintronics, and as a result hold exciting opportunities for physicists, chemists, and material scientists alike. <p><i>Perovskite Materials and Devices</i> comprehensively covers all the milestone work in perovskites research, systematically introducing the properties, methods, and technologies associated with the mineral from fundamentals to promising applications to commercialization issues. The book focuses on traditional and novel electronic operations, such as solar cells, LEDs, lasing, photodetectors, X-ray detectors, transistors, and more. It also investigates ways to make the use of such materials more environmentally friendly, which in turn can make perovskite minerals more commercially viable. <p><i>Perovskite Materials and Devices</i> readers will also find <ul><li>Summaries of the latest state-of-the-art developments and technologies, such as perovskite nanocrystals and novel electronic devices</li> <li>Detailed discussion of organic/inorganic hybrid perovskites, all-inorganic perovskite CsPbX3, and lead-free halide perovskites</li> <li>Investigation of the photovoltaic applications, namely single-crystal devices, tandem cells, integrated devices, semi-transparent devices, and flexible devices</li> <li>Description of large-area module fabrication and stability investigating</li></ul> <p><i>Perovskite Materials and Devices </i>is a useful reference for materials scientists, solid state physicists and chemists, surface physicists and chemists, and electronic engineers. It is also an ideal resource for libraries that supply these fields.
1. All-Inorganic perovskite CsPbX3 Solar Cells<br> 2. Lead-free halide perovskites for optoelectronics<br> 3. Electronic Structures of Surfaces and Interfaces with Perovskites<br> 4. Ion Migration in Halide Perovskites<br> 5. Fundamentals and Applications of Doping and Alloying in Perovskite Photovoltaics<br> 6. Molecular engineering of organic charge-transport materials for efficient perovskite solar cells<br> 7. Perovskite Single-Crystal Optoelectronic Devices<br> 8. Quasi-2D perovskites for photovoltaic applications<br> 9. Halide perovskite nanocrystals and their applications in solar cells<br> 10. Perovskite-based tandem solar cells<br> 11. Perovskite/bulk heterojunction integrated devices<br> 12. Semitransparent Perovskites for Solar Cells and Smart Windows<br> 13. Flexible optoelectronic devices based on hybrid perovskites<br> 14. Large-Area Perovskite Optoelectronic Devices and the Fabrication Techniques<br> 15. Stability of Perovskite Materials and Devices<br> 16. Halide perovskites for optic and radiation detections <br> 17. Metal-halide perovskites for coherent light emission<br> 18. Perovskite Light-emitting Diodes<br> 19. Novel electronic devices based on perovskite materials<br> 20. Lead, an obstacle for commercializing perovskite devices? <br> 21. Perspective on perovskite materials and devices<br> <br>
<p><b><i>Liming Ding, MS, PhD, </b>is a full professor at the National Center for Nanoscience and Technology, China. He received his MS from Changchun Institute of Applied Chemistry and his PhD from the University of Science and Technology of China. His research focuses on optoelectronic materials and devices, organic solar cells, perovskite solar cells, and photodetectors. He holds 8 solar battery patents.</i></p>
<p><b>A comprehensive overview of the important scientific and technological advances in commercialization of this important mineral</b></p> <p>Perovskite has held much interest for scientists and industrialists, as the mineral is abundantly available in nature. Due to the intriguing and unusual physical properties of perovskite materials—the high-absorption coefficient, low exciton-binding energy, and high dielectric constant, for example—there has been substantial focus on perovskite’s potential in applications. In particular, they have been of great use in sensors and catalyst electrodes, certain types of fuel cells, solar cells, lasers, memory devices, and spintronics, and as a result hold exciting opportunities for physicists, chemists, and material scientists alike. <p><i>Perovskite Materials and Devices</i> comprehensively covers all the milestone work in perovskites research, systematically introducing the properties, methods, and technologies associated with the mineral from fundamentals to promising applications to commercialization issues. The book focuses on traditional and novel electronic operations, such as solar cells, LEDs, lasing, photodetectors, X-ray detectors, transistors, and more. It also investigates ways to make the use of such materials more environmentally friendly, which in turn can make perovskite minerals more commercially viable. <p><i>Perovskite Materials and Devices</i> readers will also find <ul><li>Summaries of the latest state-of-the-art developments and technologies, such as perovskite nanocrystals and novel electronic devices</li> <li>Detailed discussion of organic/inorganic hybrid perovskites, all-inorganic perovskite CsPbX3, and lead-free halide perovskites</li> <li>Investigation of the photovoltaic applications, namely single-crystal devices, tandem cells, integrated devices, semi-transparent devices, and flexible devices</li> <li>Description of large-area module fabrication and stability investigating</li></ul> <p><i>Perovskite Materials and Devices </i>is a useful reference for materials scientists, solid state physicists and chemists, surface physicists and chemists, and electronic engineers. It is also an ideal resource for libraries that supply these fields.

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