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Carbon-Based Polymer Nanocomposites for High-Performance Applications
Carbon-Based Polymer Nanocomposites for High-Performance Applications
Author Díez-Pascual Ana
Publication Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020
Physical description 1 online resource (256 p.)
Topical subject Technology: general issues
Uncontrolled subject Ag
carbon nanotube
carbon nanotubes
carbon-based polymer nanocomposite
carrier type
cellulose acetate membrane
click-chemistry
CNT
conjugated polymers
cross-linked acrylamide/alginate
Diels-Alder
dispersity
electrical conductivity
electrochemical devices
electrostatic spraying
energy storage
flexible anode
flexible electrode
flexible electronics
flexible supercapacitor electrode
friction coefficient
fuel cell
graphene
graphene oxide
hexamethylene diisocyanate
hyaluronic acid
hybrid nanocomposites
hydrogen bonding
impedance spectroscopy
in situ oxidative polymerization
in-mold decoration injection molding
Joule heating
Li-ion micro-batteries
mechanical properties
melt processing
microcellular injection molding
microfibers
microstructures
morphological structure
multi walled carbon nanotubes
multi-walled carbon nanotubes
multiwalled carbon nanotube
n/a
nanocomposite
nanocomposites
nascent fiber
Paal-Knorr reaction
PANI
polyacrylonitrile
polydiphenylamine-2-carboxylic acid
polyethyleneimine
polyketone
polymer conductive film
polymer electrolyte
polypropylene
polyurethane foam
pre-lithiation
pressure sensing
re-workability
recycling
reduced graphene oxide
self-healing
single-walled carbon nanotubes
surface hardness
surface quality
tensile properties
tensile strength
thermal properties
thermal stability
thermoelectric properties
titanium dioxide
warpage
waterborne polyurethane coating
wear rate
wet-spinning
Format Language material
Bibliographic level Monograph
Language eng
Record Nr. UNINA-9910674028303321
Díez-Pascual Ana  
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020
Language material
You will find it: Univ. Federico II
Opac: Check copies here
Processing-Structure-Properties Relationships in Polymers
Processing-Structure-Properties Relationships in Polymers
Author Pantani Roberto
Publication MDPI - Multidisciplinary Digital Publishing Institute, 2019
Physical description 1 online resource (400 p.)
Topical subject History of engineering and technology
Uncontrolled subject 3D printing/additive manufacturing
atomic force microscopy
biaxial elongation
biobased films
biodegradable nanofibers
bioresorbable polymers
bioresorbable vascular scaffolds
breathable film
carbon black
carbon nanotube
cavitation
chain orientation
collagen
compatibilizer
composite
composites
compression molding
conductive filler
conductive polymer composites
contact angle
controllable gas permeability
copper clad laminate
critical gel
crystalline morphology
crystallinity
crystallisation
curing rate
deformation
degradation
electrical conductivity
epinephrine
epoxy microstructure
ethylene vinyl acetate
fatigue
flame retardant
flow
foam
fused filament fabrication/fused deposition modelling
gel
graphene
graphite
Harmonix AFM
homogeneous dispersion
humidity
hydrophobicity
in situ X-ray
incremental forming
indentation
injection molding
intrinsic viscosity
ionic liquids
isotactic polypropylene
layered double hydroxides
lidocaine
linear coefficient of thermal expansion (CTE)
mechanical performance
mechanical properties
melamine polyphosphate
microcellular injection molding
microencapsulation
microfibrillar composites
model
mold temperature evolution
morphology
nanoparticles
nanoreinforcement
octakis[(3-glycidoxypropyl)dimethylsiloxy]octasilsesquioxane (GPOSS)
orientation
phase transitions
physicochemical characterization
PLA
PLGA
PLLA
poly(?-caprolactone)
poly(ethylene terephthalate)
poly(lactic acid)
polyamide 6
polycaprolactone
polyimide film
polymer blend
polymer composite
polymer morphology
polymorphism
polyolefin
polyoxymethylene (POM)
polypropylene
polyurethane
polyvinyl butyral
processing
reactive blending
SAXS
shear
SPIF
stress-induced phase transitions
stretch blow molding
structural analysis
structure and properties
supercritical CO2
supercritical fluid
supercritical N2
temperature
temperature sensitive
tissue engineering and regenerative medicine
ultra-high molecular weight polyethylene
ultra-high molecular weight polyethylene (UHMWPE)
uniaxial compression
uniaxial tensile deformation
WAXS
X-ray diffraction
XRD
ISBN 3-03921-881-6
Format Language material
Bibliographic level Monograph
Language eng
Record Nr. UNINA-9910367739503321
Pantani Roberto  
MDPI - Multidisciplinary Digital Publishing Institute, 2019
Language material
You will find it: Univ. Federico II
Opac: Check copies here