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Springer Series in Materials Science

Solar Cells and Modules

Herausgeber: Shah, Arvind (Ed.)

Vorschau
  • Introduces the field in an intuitive and accessible manner
  • Provides an up-to-date survey of research and development of crystalline silicon wafer-based and thin-film solar cells
  • Presents important production techniques and applications of this technology
Weitere Vorteile

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eBook 106,99 €
Preis für Deutschland (Brutto)
  • ISBN 978-3-030-46487-5
  • Versehen mit digitalem Wasserzeichen, DRM-frei
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Hardcover 139,09 €
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Über dieses Buch

This book gives a comprehensive introduction to the field of photovoltaic (PV) solar cells and modules. In thirteen chapters, it addresses a wide range of topics including the spectrum of light received by PV devices, the basic functioning of a solar cell, and the physical factors limiting the efficiency of solar cells. It places particular emphasis on crystalline silicon solar cells and modules, which constitute today more than 90 % of all modules sold worldwide. Describing in great detail both the manufacturing process and resulting module performance, the book also touches on the newest developments in this sector, such as Tunnel Oxide Passivated Contact (TOPCON) and heterojunction modules, while dedicating a major chapter to general questions of module design and fabrication. Overall, it presents the essential theoretical and practical concepts of PV solar cells and modules in an easy-to-understand manner and discusses current challenges facing the global research and development community.

Über die Autor*innen

Arvind Shah was born in Bombay, India, and attended the ETH Zürich, where he graduated in 1964 as Electrical Engineer and completed his PhD in Applied Physics in 1968 on memory applications of ferroelectrics. From 1968 to 1975, he worked as a lecturer and R&D group leader at the Department of Industrial Research of the ETH Zürich and, in 1975, founded and co-directed the Centre for Electronics Design and Technology (CEDT) at the Indian Institute of Science in Bangalore, which is currently one of India’s leading University Centres in the field of electronics. In 1979, he was appointed Professor at the University of Neuchâtel in Switzerland, where he founded the Photovoltaics Research Laboratory (PV Lab Neuchâtel) as a part of the Institute of Microtechnology (IMT). The PV Lab Neuchâtel is a pioneer in the establishment of low-cost production methods for solar cells based on silicon and has significantly contributed to the development of transparent conductive oxides as contact layers for solar cells. In October 2005, Arvind Shah retired from his position as Head of the PV Lab and as Professor at the University of Neuchâtel and at the Ecole polytechnique fédérale de Lausanne (EPFL). Since then he has been active as scientific consultant to various industries throughout Europe, India and the USA. He is author or co-author of more than 200 peer-reviewed papers in scientific journals and editor of the book “Thin-Film Silicon Solar Cells”, published by the EPFL Press in 2010. Together with Johannes Meier, he was awarded, in 2005, the Swiss Solar Prize. In 2007 he received the Becquerel Prize, during the 22nd EC Photovoltaic Solar Energy Conference.

Inhaltsverzeichnis (13 Kapitel)

Inhaltsverzeichnis (13 Kapitel)

Dieses Buch kaufen

eBook 106,99 €
Preis für Deutschland (Brutto)
  • ISBN 978-3-030-46487-5
  • Versehen mit digitalem Wasserzeichen, DRM-frei
  • Erhältliche Formate: PDF, EPUB
  • eBooks sind auf allen Endgeräten nutzbar
  • Sofortiger eBook Download nach Kauf
Hardcover 139,09 €
Preis für Deutschland (Brutto)
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Bibliografische Information

Bibliographic Information
Buchtitel
Solar Cells and Modules
Herausgeber
  • Arvind Shah
Titel der Buchreihe
Springer Series in Materials Science
Buchreihen Band
301
Copyright
2020
Verlag
Springer International Publishing
Copyright Inhaber
Springer Nature Switzerland AG
eBook ISBN
978-3-030-46487-5
DOI
10.1007/978-3-030-46487-5
Hardcover ISBN
978-3-030-46485-1
Buchreihen ISSN
0933-033X
Auflage
1
Seitenzahl
XX, 346
Anzahl der Bilder
49 schwarz-weiß Abbildungen, 176 Abbildungen in Farbe
Themen