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[NT 33762] ISBD
Advances in thin-film solar cells
[NT 42944] Record Type:
[NT 8598] Electronic resources : [NT 40817] monographic
[NT 47261] Author:
DharmadasaI. M.,
[NT 47351] Place of Publication:
Singapore
[NT 47263] Published:
CRC Press; Pan Stanford Publishing;
[NT 47352] Year of Publication:
c2012
[NT 47264] Description:
1 online resource (225 p.)ill. (some col.) :
[NT 47266] Subject:
Solar cells - Materials -
[NT 47266] Subject:
Photovoltaic cells - Materials -
[NT 47266] Subject:
Solar cells - Design and construction -
[NT 47266] Subject:
Thin film devices - Design and construction -
[NT 51458] Online resource:
http://www.crcnetbase.com/isbn/9789814364126
[NT 47265] Notes:
Title from PDF title page (viewed Oct. 30, 2012)
[NT 51398] Summary:
This book concentrates on the latest developments in our understanding of solid-state device physics. The material presented is mainly experimental and based on CdTe thin-film solar cells. It extends these new findings to CIGS thin-film solar cells and presents a new device design based on graded bandgap multilayer solar cells. This design has been experimentally tested using the well-researched GaAs/AlGaAs system and initial devices have shown impressive device parameters. These devices are capable of absorbing all radiation (UV, visible, and infra-red) within the solar spectrum and combines
[NT 50961] ISBN:
9789814364126electronic bk.
[NT 50961] ISBN:
9814364126electronic bk.
[NT 60779] Content Note:
Front Cover; Contents; Preface; List of Symbols and Abbreviations Used in the Book; 1. Photovoltaic Solar Energy Conversion; 2. Status Report on Solar Energy Technologies; 3. Electrochemical Deposition of Solar Energy Materials; 4. Background of the CdTe Solar Cell and the New Device Concept; 5. Extension of the New Model to CIGS Thin-Film Solar Cells; 6. Effective Harvesting of Photons; 7. Multi-Layer Graded Bandgap Solar Cells; 8. Solar Cells Active in Complete Darkness; 9. Effects of Defects on Photovoltaic Solar Cell Characteristics; 10. A Future Dominated by Solar Energy
Advances in thin-film solar cells
Dharmadasa, I. M.
Advances in thin-film solar cells
/ I. M. Dharmadasa - Singapore : CRC Press, c2012. - 1 online resource (225 p.) ; ill. (some col.).
Front Cover; Contents; Preface; List of Symbols and Abbreviations Used in the Book; 1. Photovoltaic Solar Energy Conversion; 2. Status Report on Solar Energy Technologies; 3. Electrochemical Deposition of Solar Energy Materials; 4. Background of the CdTe Solar Cell and the New Device Concept; 5. Extension of the New Model to CIGS Thin-Film Solar Cells; 6. Effective Harvesting of Photons; 7. Multi-Layer Graded Bandgap Solar Cells; 8. Solar Cells Active in Complete Darkness; 9. Effects of Defects on Photovoltaic Solar Cell Characteristics; 10. A Future Dominated by Solar Energy.
Title from PDF title page (viewed Oct. 30, 2012)Description based on print version record.
Includes bibliographical references and index.
ISBN 9789814364126ISBN 9814364126
Solar cellsPhotovoltaic cellsSolar cellsThin film devices -- Materials -- Materials -- Design and construction -- Design and construction
Advances in thin-film solar cells
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Front Cover; Contents; Preface; List of Symbols and Abbreviations Used in the Book; 1. Photovoltaic Solar Energy Conversion; 2. Status Report on Solar Energy Technologies; 3. Electrochemical Deposition of Solar Energy Materials; 4. Background of the CdTe Solar Cell and the New Device Concept; 5. Extension of the New Model to CIGS Thin-Film Solar Cells; 6. Effective Harvesting of Photons; 7. Multi-Layer Graded Bandgap Solar Cells; 8. Solar Cells Active in Complete Darkness; 9. Effects of Defects on Photovoltaic Solar Cell Characteristics; 10. A Future Dominated by Solar Energy
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This book concentrates on the latest developments in our understanding of solid-state device physics. The material presented is mainly experimental and based on CdTe thin-film solar cells. It extends these new findings to CIGS thin-film solar cells and presents a new device design based on graded bandgap multilayer solar cells. This design has been experimentally tested using the well-researched GaAs/AlGaAs system and initial devices have shown impressive device parameters. These devices are capable of absorbing all radiation (UV, visible, and infra-red) within the solar spectrum and combines
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http://www.crcnetbase.com/isbn/9789814364126
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