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Advancements in Gel Science-A Special Issue in Memory of Toyoichi Tanaka / Masayuki Tokita
Advancements in Gel Science-A Special Issue in Memory of Toyoichi Tanaka / Masayuki Tokita
Autore Tokita Masayuki
Pubbl/distr/stampa MDPI - Multidisciplinary Digital Publishing Institute, 2019
Descrizione fisica 1 electronic resource (178 p.)
Soggetto non controllato delamination
fractal analysis
buckling
artificial hydrogel cartilage
frictional property
kinetic coefficient
paint coating
scaling analysis
moving boundary picture
XRD
volume phase transition
fracture
fatigue
crack
gelation temperature
xerogel
swelling of thermosensitive gels
copolymerization
phase transition dynamics
wetting
poly (acryl amide) gel
swelling
sucrose
anisotropic shape
ice crystallization during rewarming
micropipette aspiration
microgel
crosslink density (density of crosslinks)
hydrogel
Sephadex® (crosslinked dextran)
sol-gel transition
thermoresponsive property
compression
Brunauer-Emmett-Teller theory
monomer sequence
microcrystallite
swelling behavior
micrometric confinement
wear
light scattering
X-ray CT
co-crosslinking
electrophoresis
gel
hysteresis
ice grain
effects of electric charge
phase separation
acrylamide derivative
Barrett-Joyner-Halenda analysis
temperature
xylitol
agarose gel
spinodal temperature
glassy water
chemical gel
blood coagulation
poly(vinyl alcohol)
pulse field gradient spin echo method of nuclear magnetic resonance (PFG-NMR)
time domain reflectometry (TDR) of dielectric spectroscopy
site-bond correlated-percolation model for polymer gelation
spinodal decomposition
adhesion
janus particle
wrinkle
friction
cloud point temperature
drying
gamma ray sterilization
solvent exchange
solids content
solvent transport
heterogeneous gelation dynamics
PVA gel
hydrogen bond
ISBN 9783039213443
303921344X
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910367567403321
Tokita Masayuki  
MDPI - Multidisciplinary Digital Publishing Institute, 2019
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Electronic and Thermal Properties of Graphene
Electronic and Thermal Properties of Graphene
Autore Rhee Kyong Yop
Pubbl/distr/stampa Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020
Descrizione fisica 1 online resource (324 p.)
Soggetto topico Technology: general issues
Soggetto non controllato 2D materials
AFM
applications
Biosensor
carbon fiber
carbon foam
carbon honeycomb
carbon-coated separator
chemical modified graphene
chemical vapor deposition
conductive adhesives
CVD graphene
defect
Dirac fermions
EDLC
electrical
electrical properties
Electrochemical
electronic and thermal conductivity
electronic and thermal properties
electronic materials
electronic structure
enantiomer recognition
energy and power density
ferromagnetism
flexiable
grafting-from
graphene
Graphene
graphene nanoplatelet
graphene oxide
Graphene Oxide
graphene quantum dots
graphene-based applications
graphene/2D materials
graphene/metal oxide
graphene/polymer
HDPE
humidity sensors
hydrogenated epitaxial graphene
isotropic pitch
LAMMPS
latent heat storage
liquid exfoliation
lithium-sulfur batteries
mechanical properties
metasurface
molecular dynamic
molecular dynamics
n/a
nanocomposite
nanocomposites
nanoindentation
nanomaterials
PECVD
PEEP
phase change material
phase shift
phenylalanine
photocatalysis
polarization
polysulfide
polyvinylidene fluoride
PVDF
pyrolysis fuel oil (PFO)
quantum Hall effect
Raman spectroscopy
reduced graphene oxide
rGO scrolls
ripple
ROP
ruga
Seebeck coefficient
shuttle effect
SnO2 aerogel
sol-gel method
supercapacitor
thermal
thermal conductivity
thermal properties
thermoelectric
thermoelectric effect
thiol functionalization
transfer
transparent heater
tunability
uniaxial tension
wavefront shaping
wrinkle
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910557122903321
Rhee Kyong Yop  
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui