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This book covers novel and innovative technologies used in
development, modeling, chemical/physical investigation and
biomedical (in-vitro and in-vivo) trials of nanomaterials and
nanocomposites. Novel methods for nanoparticle development and
manufacturing are presented, as well as their safety and promising
applications. In addition, the book highlights new frontiers in the
use of metal / metal oxide nanoparticles, hierarchical
nanostructures and organic coatings as sensors for detecting gases,
inorganic and organic materials, including biosensors for bacteria
and cancers. Organic nanoparticle composites for medical
applications (tissue engineering, tissue replacement, regeneration,
etc.), including hydroxyapatite NPs, are also covered, together
with related in-vitro and preclinical investigations. In closing,
the book shares recent findings on orthopedic and dental implant
coatings using nanoparticles, their biological efficacy and safety.
This book presents the findings of experimental and theoretical
(including first-principles molecular dynamics simulation) studies
of nanostructured and nanocomposite metal-based materials, and
nanoscale multilayer coatings fabricated by physical or chemical
vapor deposition, magnetron sputtering, electrospark alloying,
ionic layer absorption, contact melting, and high-current electron
beam irradiation. It also discusses novel methods of nanocomposite
formation, as well as the structure of the deposited films,
coatings and other nanoscale materials, their elemental and phase
composition, and their physical-mechanical, tribological, magnetic
and electrical properties. Lastly, it explores the influence of a
various surface modification methods, such as thermal annealing,
pulsed laser modification, and thermomechanical and ultrasonic
treatment, as well as different properties of nanostructured films.
This book covers novel and innovative technologies used in
development, modeling, chemical/physical investigation and
biomedical (in-vitro and in-vivo) trials of nanomaterials and
nanocomposites. Novel methods for nanoparticle development and
manufacturing are presented, as well as their safety and promising
applications. In addition, the book highlights new frontiers in the
use of metal / metal oxide nanoparticles, hierarchical
nanostructures and organic coatings as sensors for detecting gases,
inorganic and organic materials, including biosensors for bacteria
and cancers. Organic nanoparticle composites for medical
applications (tissue engineering, tissue replacement, regeneration,
etc.), including hydroxyapatite NPs, are also covered, together
with related in-vitro and preclinical investigations. In closing,
the book shares recent findings on orthopedic and dental implant
coatings using nanoparticles, their biological efficacy and safety.
This book presents the findings of experimental and theoretical
(including first-principles molecular dynamics simulation) studies
of nanostructured and nanocomposite metal-based materials, and
nanoscale multilayer coatings fabricated by physical or chemical
vapor deposition, magnetron sputtering, electrospark alloying,
ionic layer absorption, contact melting, and high-current electron
beam irradiation. It also discusses novel methods of nanocomposite
formation, as well as the structure of the deposited films,
coatings and other nanoscale materials, their elemental and phase
composition, and their physical-mechanical, tribological, magnetic
and electrical properties. Lastly, it explores the influence of a
various surface modification methods, such as thermal annealing,
pulsed laser modification, and thermomechanical and ultrasonic
treatment, as well as different properties of nanostructured films.
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