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Physical Vapor Deposited Biomedical Coatings



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Autore: Stan George E Visualizza persona
Titolo: Physical Vapor Deposited Biomedical Coatings Visualizza cluster
Pubblicazione: Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Descrizione fisica: 1 online resource (174 p.)
Soggetto topico: Technology: general issues
Soggetto non controllato: 3D printing
antibacterial
antibacterial coatings
bio-coatings
bioactive glass
bioactivity
biological-derived hydroxyapatite coatings
biomimetic coatings
biomimetics
biomimicry
calcium phosphate
calcium phosphates
cancer
cathodic arc deposition
ceramic coatings
coating
copper doping
corrosion resistance
cytocompatibility
food industrial by-products
gallium doping
hydroxyapatite
implant coating
in vivo extraction force
laser deposition
lithium doping
MAPLE
mechanical
medical devices
nanoindentation
orthopedic applications
PEEK
physical vapour deposition
PLD
pulsed DC
pulsed electron deposition
pulsed laser deposition
RF magnetron sputtering
Silicon
sputtering
surface modification
thin film
thin films
thin-films
tissue engineering
titanium-based carbonitrides
ToFSIMS
X-ray diffraction
XPS
yttria-stabilized zirconia
Persona (resp. second.): StuartBryan W
StanGeorge E
Sommario/riassunto: The book outlines a series of developments made in the manufacturing of bio-functional layers via Physical Vapour-Deposited (PVD) technologies for application in various areas of healthcare. The scrutinized PVD methods include Radio-Frequency Magnetron Sputtering (RF-MS), Cathodic Arc Evaporation, Pulsed Electron Deposition and its variants, Pulsed Laser Deposition, and Matrix-Assisted Pulsed Laser Evaporation (MAPLE) due to their great promise, especially in dentistry and orthopaedics. These methods have yet to gain traction for industrialization and large-scale application in biomedicine. A new generation of implant coatings can be made available by the (1) incorporation of organic moieties (e.g., proteins, peptides, enzymes) into thin films using innovative methods such as combinatorial MAPLE, (2) direct coupling of therapeutic agents with bioactive glasses or ceramics within substituted or composite layers via RF-MS, or (3) innovation in high-energy deposition methods, such as arc evaporation or pulsed electron beam methods.
Titolo autorizzato: Physical Vapor Deposited Biomedical Coatings  Visualizza cluster
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910557443103321
Lo trovi qui: Univ. Federico II
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