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The book describes emerging strategies to circumvent transmission
and thermalization losses in solar cells, and thereby redefine the
limits of solar power conversion efficiency. These strategies
include the use of organic molecules and rare-earth metal
materials. Approaches to augment the efficiency of these processes
via near-field enhancement are described as well. This book
includes a discussion of state-of-the-art implementations of these
emerging strategies in solar cells, both internally, as in
molecular intermediate band and charge carrier multiplication, and
externally, such as photon up- and down-conversion. Tools for
characterization are also provided. Written by leading researchers
in the field, this book can be useful to both beginners and
experienced researchers in solar energy.
The book describes emerging strategies to circumvent transmission
and thermalization losses in solar cells, and thereby redefine the
limits of solar power conversion efficiency. These strategies
include the use of organic molecules and rare-earth metal
materials. Approaches to augment the efficiency of these processes
via near-field enhancement are described as well. This book
includes a discussion of state-of-the-art implementations of these
emerging strategies in solar cells, both internally, as in
molecular intermediate band and charge carrier multiplication, and
externally, such as photon up- and down-conversion. Tools for
characterization are also provided. Written by leading researchers
in the field, this book can be useful to both beginners and
experienced researchers in solar energy.
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