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Nonthermal Plasmas for Materials Processing (Hardcover)
Loot Price: R5,989
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Nonthermal Plasmas for Materials Processing (Hardcover)
Expected to ship within 12 - 19 working days
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NONTHERMAL PLASMAS FOR MATERIALS PROCESSING This unique book covers
the physical and chemical aspects of plasma chemistry with polymers
and gives new insights into the interaction of physics and
chemistry of nonthermal plasmas and their applications in materials
science for physicists and chemists. The properties and
characteristics of plasmas, elementary (collision) processes in the
gas phase, plasma surface interactions, gas discharge plasmas and
technical plasma sources, atmospheric plasmas, plasma diagnostics,
polymers and plasmas, plasma polymerization, post-plasma processes,
plasma, and wet-chemical processing, plasma-induced generation of
functional groups, and the chemical reactions on these groups along
with a few exemplary applications are discussed in this
comprehensive but condensed state-of-the-art book on plasma
chemistry and its dependence on plasma physics. While plasma
physics, plasma chemistry, and polymer science are often handled
separately, the aim of the authors is to harmoniously join the
physics and chemistry of low-pressure and atmospheric-pressure
plasmas with polymer surface chemistry and polymerization and to
compare such chemistry with classic chemistry. Readers will find in
these chapters Interaction of plasma physics and chemistry in
plasmas and at the surface of polymers; Explanation and
interpretation of physical and chemical mechanisms on plasma
polymerization and polymer surface modification; Introduction of
modern techniques in plasma diagnostics, surface analysis of
solids, and special behavior of polymers on exposure to plasmas;
Discussion of the conflict of energy-rich plasma species with
permanent energy supply and the much lower binding energies in
polymers and alternatives to avoid random polymer decomposition
Technical applications such as adhesion, cleaning, wettability,
textile modification, coatings, films, etc. New perspectives are
explained about how to use selective and mild processes to allow
post-plasma chemistry on non-degraded polymer surfaces. Audience
Physicists, polymer chemists, materials scientists, industrial
engineers in biomedicine, coatings, printing, etc.
General
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