• Medientyp: Buch
  • Titel: Quantum dot solar cells
  • Enthält: Recent Progress in Colloidal Quantum Dot-Sensitized Solar Cells / Irene Barceló, Néstor Guijarro, Teresa Lana-Villarreal and Roberto Gómez
    Hierarchically Nanostructured Photoelectrodes for Quantum-Dot-Sensitized Solar Cells / Eui-Hyun Kong, Yong-June Chang and Hyun Myung Jang
    Hybrid Optoelectronic Devices with Colloidal Quantum Dots / Chien-Chung Lin
    Control of Photoinduced Charge Transfer in Semiconducting Quantum Dot-Based Hybrids / Zhihua Xu, Corey R. Hine, Mathew M. Maye, Qinpeng Meng and Mircea Cotlet
    Theory of Quantum Dot Arrays for Solar Cell Devices / Stanko Tomić
    Material Selection for the Quantum Dot Intermediate Band Solar Cell / Steven Jenks and Robert Gilmore
    AlGaInAs Quantum Dots for Intermediate Band Formation in Solar Cell Devices / Stefan Kremling, Christian Schneider, Sven Höfling, Martin Kamp and Alfred Forchel
    Requisites for Highly Efficient Hot-Carrier Solar Cells / Yasuhiko Takeda
    Increasing Efficiency with Multiple Exciton Generation / N. McElroy, M. Cadirci, A. Al-Otaify, R. Page and D. J. Binks
    Graphene Quantum Dot-Based Organic Solar Cells / Vinay Gupta, Tanvi Upreti and Suresh Chand
    Graphene and Quantum Dot Nanocomposites for Photovoltaic Devices / Xukai Xin
    The Dynamics of Multiple Exciton Generation in Semiconductor Quantum Dots / Qing Shen, Kenji Katayama and Taro Toyoda
    Light-Induced Charge Carrier Dynamics at Nanostructured Interfaces Investigated by Ultrafast Electron Diffractive Photovoltammetry / Kiseok Chang, Ryan A. Murdick, Tzong-Ru T. Han, Fei Yuan and Chong-Yu Ruan
    Photonics and Plasmonics for Enhanced Photovoltaic Performance / Yunlu Xu, Joseph Murray and Jeremy N. Munday.
  • Beteiligte: Wu, Jiang [Sonstige Person, Familie und Körperschaft]; Wang, Zhiming M. [Sonstige Person, Familie und Körperschaft]
  • Erschienen: New York [u.a.]: Springer, 2014
  • Erschienen in: Lecture notes in nanoscale science and technology ; 15
  • Umfang: XIV, 387 S.; Ill., graph. Darst. (teilw. farb.)
  • Sprache: Englisch
  • ISBN: 9781461481478
  • RVK-Notation: UP 3150 : Strukturierte Halbleiter, Mehrlagenschichten, Supergitter, Heterostrukturen und Quantentröge, Quantum wells
    VE 9850 : Allgemeines
    ZP 3730 : Fotovoltaik
  • Schlagwörter: Solarzelle > Quantenpunkt
  • Entstehung:
  • Anmerkungen: Literaturangaben
  • Beschreibung: "The third generation of solar cells includes those based on semiconductor quantum dots. This sophisticated technology applies nanotechnology and quantum mechanics theory to enhance the performance of ordinary solar cells. Although a practical application of quantum dot solar cells has yet to be achieved, a large number of theoretical calculations and experimental studies have confirmed the potential for meeting the requirement for ultra-high conversion efficiency. In this book, high-profile scientists have contributed tutorial chapters that outline the methods used in and the results of various quantum dot solar cell designs, including quantum dot intermediate band solar cells, hot electron quantum dot solar cells, quantum-dot sensitized solar cells, colloidal quantum dot solar cells, hybrid polymer-quantum dot solar cells, and MEG quantum dot solar cells. Both theoretical and experimental approaches are described. Quantum Dot Solar Cells helps to connect the fundamental laws of physics and the chemistry of materials with advances in device design and performance. The book can be recommended for a broad audience of chemists, electrical engineers, and materials scientists, and is suitable for use in courses on materials and device design for advanced and future optoelectronics."--

    The third generation of solar cells includes those based on semiconductor quantum dots. This sophisticated technology applies nanotechnology and quantum mechanics theory to enhance the performance of ordinary solar cells. Although a practical application of quantum dot solar cells has yet to be achieved, a large number of theoretical calculations and experimental studies have confirmed the potential for meeting the requirement for ultra-high conversion efficiency. In this book, high-profile scientists have contributed tutorial chapters that outline the methods used in and the results of various quantum dot solar cell designs, including quantum dot intermediate band solar cells, hot electron quantum dot solar cells, quantum-dot sensitized solar cells, colloidal quantum dot solar cells, hybrid polymer-quantum dot solar cells, and MEG quantum dot solar cells. Both theoretical and experimental approaches are described. Quantum Dot Solar Cells helps to connect the fundamental laws of physics and the chemistry of materials with advances in device design and performance. The book can be recommended for a broad audience of chemists, electrical engineers, and materials scientists, and is suitable for use in courses on materials and device design for advanced and future optoelectronics. Features comprehensive coverage of novel technologies for quantum dot solar cells Written by leading experts in the corresponding research areas Supplies the keys to understanding the latest technologies for third-generation solar cells Provides a foundation for future research in materials and optoelectronics for energy applications
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