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Biohybrid barrier films from fluidized pectin and nanoclay
Jari Vartiainen
*
,
Tekla Tammelin
, Jaakko Pere
, Unto Tapper
,
Ali Harlin
*
Corresponding author for this work
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
60
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Keyphrases
Hybrid System
100%
Pectin
100%
Nanoclay
100%
Barrier Film
100%
Fluidized
100%
Barrier Properties
28%
Montmorillonite
28%
High Shear
28%
Pectin Film
28%
Barrier Packaging
14%
Humidity
14%
Spin Coating
14%
Hybrid Materials
14%
Nanocomposite Film
14%
High Pressure
14%
Packaging Materials
14%
Model Surfaces
14%
Fluidization
14%
Nanosize
14%
Film Formation
14%
Water Vapor
14%
Platelets
14%
Hybrid Film
14%
Shear-induced
14%
Sugar Beet Pectin
14%
Fluidizer
14%
Environmental Sounds
14%
INIS
barriers
100%
films
100%
pectins
100%
shear
33%
montmorillonite
33%
layers
16%
solutions
16%
surfaces
16%
hybrids
16%
concentration
16%
packaging
16%
greases
16%
water vapor
16%
casting
16%
oxygen
16%
humidity
16%
nanostructures
16%
high pressure
16%
stacks
16%
orientation
16%
nanocomposites
16%
fluidization
16%
sugar beets
16%
Engineering
Barrier Film
100%
Nanoclays
100%
Barrier Property
28%
Fluidization
14%
Surface Model
14%
Grease
14%
Nanocomposites
14%
Platelet
14%
Packaging Material
14%
Relative Humidity
14%
Material Science
Nanoclay
100%
Film
100%
Nanocomposite Film
14%
Packaging Material
14%
Film Growth
14%
Surface (Surface Science)
14%
Water Vapor
14%
Platelet
14%
Chemical Engineering
Film
100%
Clay Mineral
33%
Fluidization
16%
Food Science
Pectin
100%
Packaging Material
20%
Sugar Beet Pectin
20%