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The book provides an up-to-date account of the various techniques
of fabrication & functionalization of electrospun nanofibers as
well as recent advancements. An overview of the advanced
applications of such techniques in different areas is also
presented. Both experimental and theoretical approaches related to
electrospun nanofibers are covered along with a discussion on the
inherent properties of electrospun nanofibers. Therefore, this book
provides a unique resource not only to established researchers but
also newcomers starting out in this field.
The book provides an up-to-date account of the various techniques
of fabrication & functionalization of electrospun nanofibers as
well as recent advancements. An overview of the advanced
applications of such techniques in different areas is also
presented. Both experimental and theoretical approaches related to
electrospun nanofibers are covered along with a discussion on the
inherent properties of electrospun nanofibers. Therefore, this book
provides a unique resource not only to established researchers but
also newcomers starting out in this field.
Conjugated Polymers for Next-Generation Applications, Volume Two:
Energy Storage Devices describes the synthesis and characterization
of varied conjugated polymeric materials and their key
applications, including active electrode materials for
electrochemical capacitors and lithium-ion batteries, along with
new ideas of functional materials for next-generation high-energy
batteries, a discussion of common design procedures, and the pros
and cons of conjugated polymers for certain applications. The
book's emphasis lies in the underlying electronic properties of
conjugated polymers, their characterization and analysis, and the
evaluation of their effectiveness for utilization in energy and
electronics applications. This book is ideal for researchers and
practitioners in the area of materials science, chemistry and
chemical engineering.
Conjugated Polymers for Next-Generation Applications, Volume One:
Synthesis, Properties and Optoelectrochemical Devices describes the
synthesis and characterization of varied conjugated polymeric
materials and their key applications, including active electrode
materials for electrochemical capacitors and lithium-ion batteries,
along with new ideas of functional materials for next-generation
high-energy batteries, a discussion of common design procedures,
and the pros and cons of conjugated polymers for certain
applications. The book's emphasis lies in the underlying electronic
properties of conjugated polymers, their characterization and
analysis, and the evaluation of their effectiveness for utilization
in energy and electronics applications. This book is ideal for
researchers and practitioners in the area of materials science,
chemistry and chemical engineering.
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