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Electrochemically Engineered Nanoporous Materials - Methods, Properties and Applications (Hardcover, 1st ed. 2015)
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Electrochemically Engineered Nanoporous Materials - Methods, Properties and Applications (Hardcover, 1st ed. 2015)
Series: Springer Series in Materials Science, 220
Expected to ship within 12 - 17 working days
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This book provides in-depth knowledge about the fabrications,
structures, properties and applications of three outstanding
electrochemically engineered nanoporous materials including porous
silicon, nanoporous alumina and nanotubular titania. The book
integrates three major themes describing these materials. The first
theme is on porous silicon reviewing the methods for preparation by
electrochemical etching, properties and methods for surface
functionalization relevant for biosensing applications. Biomedical
applications of porous silicon are major focus, described in
several chapters reviewing recent developments on bioanalysis,
emerging capture probes and drug delivery. The second theme on
nanoporous alumina starts with describing the concept of
self-organized electrochemical process used for synthesis nanopore
and nanotube structures of valve metal oxides and reviewing recent
development and progress on this field. The following chapters are
focused mainly on optical properties and biosensing application of
nanoporous alumina providing the reader with the depth of
understanding of the structure controlled optical and photonic
properties and design of optical biosensing devices using different
detection principles such as photoluminescence, surface plasmon
resonance, reflective spectrometry, wave guiding, Raman scattering
etc. The third theme is focused on nanotubular titania reviewing
three key applications including photocatalysis, solar cells and
drug delivery. The book represents an important resource for
academics, researchers, industry professionals, post-graduate and
high-level undergraduate students providing them with both an
overview of the current state-of-the-art on these materials and
their future developments.
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