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This book will provide readers with deep insight into the
intriguing science of thermoelectric thin films. It serves as a
fundamental information source on the techniques and methodologies
involved in thermoelectric thin film growth, characterization and
device processing. This book involves widespread contributions on
several categories of thermoelectric thin films: oxides,
chalcogenides, iodates, nitrides and polymers. This will serve as
an invaluable resource for experts to consolidate their knowledge
and will provide insight and inspiration to beginners wishing to
learn about thermoelectric thin films. Provides a single-source
reference on a wide spectrum of topics related to thermoelectric
thin films, from organic chemistry to devices, from physical
chemistry to applied physics, from synthesis to device
implementation; Covers several categories of thermoelectric thin
films based on different material approaches such as oxides,
chalcogenides, iodates, nitrides and polymers; Discusses synthesis,
characterization, and device processing of thermoelectric thin
films, as well as the nanoengineering approach to tailor the
properties of the used materials at the nanoscale level.
This book will provide readers with deep insight into the
intriguing science of thermoelectric thin films. It serves as a
fundamental information source on the techniques and methodologies
involved in thermoelectric thin film growth, characterization and
device processing. This book involves widespread contributions on
several categories of thermoelectric thin films: oxides,
chalcogenides, iodates, nitrides and polymers. This will serve as
an invaluable resource for experts to consolidate their knowledge
and will provide insight and inspiration to beginners wishing to
learn about thermoelectric thin films. Provides a single-source
reference on a wide spectrum of topics related to thermoelectric
thin films, from organic chemistry to devices, from physical
chemistry to applied physics, from synthesis to device
implementation; Covers several categories of thermoelectric thin
films based on different material approaches such as oxides,
chalcogenides, iodates, nitrides and polymers; Discusses synthesis,
characterization, and device processing of thermoelectric thin
films, as well as the nanoengineering approach to tailor the
properties of the used materials at the nanoscale level.
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