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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.
Photovoltaic technology has now developed to the extent that it is
close to fulfilling the vision of a "solar-energy world," as
devices based on this technology are becoming efficient, low-cost
and durable. This book provides a comprehensive treatment of
thin-film silicon, a prevalent PV material, in terms of its
semiconductor nature, starting out with the physical properties,
but concentrating on device applications. A special emphasis is
given to amorphous silicon and microcrystalline silicon as
photovoltaic materials, along with a model that allows these
systems to be physically described in the simplest manner possible,
thus allowing the student or scientist/engineer entering the field
of thin-film electronics to master a few basic concepts that are
distinct from those in the field of conventional semiconductors.
The main part of the book deals with solar cells and modules by
illustrating the basic functioning of these devices, along with
their limitations, design optimization, testing and fabrication
methods. Among the manufacturing processes discussed are
plasma-assisted and hot-wire deposition, sputtering, and
structuring techniques.
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