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Keyphrases
Structural Properties
100%
Structural Design
100%
Electrospun
100%
Lactic Acid
100%
Mesoporous Matrix
100%
Polyacrylonitrile
100%
Poly(L-lactic acid)
72%
Porosity
9%
Mechanical Performance
9%
Water Absorption
9%
Young's Modulus
9%
Mass Transport
9%
Tissue Engineering
9%
Tensile Test
9%
Scaffold-based
9%
Wettability
9%
Stress-strain
9%
Mesoporosity
9%
Ductility
9%
High Specific Surface Area
9%
Nitrogen Adsorption
9%
Mechanical Integrity
9%
Structure Performance
9%
Hydrophilicity
9%
Structure of Affect
9%
Electrospinning
9%
Sequence Specificity
9%
Wound Healing Applications
9%
Multilayer Configuration
9%
Mechanical Balance
9%
Bilayer Scaffold
9%
Outermost Layer
9%
Yeoh Hyperelastic Model
9%
Five-layer
9%
Single Polymer
9%
Multilayer Design
9%
Transport Performance
9%
Layer Design
9%
Structure-transport Relationship
9%
Enhanced Stiffness
9%
Permeability Measurement
9%
High Viability
9%
In Vitro Assay
9%
Water Vapor Permeability
9%
Depositional Sequences
9%
Sequence-dependent Degradation
9%
Hierarchical Mesopores
9%
Electrospun Scaffolds
9%
Human Cells
9%
Fibrous Scaffold
9%
INIS
matrices
100%
layers
100%
design
100%
nanostructures
100%
polyacrylonitrile
100%
lactic acid
100%
transport
15%
permeability
15%
configuration
7%
interactions
7%
engineering
7%
comparative evaluations
7%
applications
7%
water
7%
control
7%
range
7%
performance
7%
values
7%
pressure range mega pa
7%
porosity
7%
polymers
7%
nitrogen
7%
viability
7%
tissues
7%
young modulus
7%
absorption
7%
balances
7%
deposition
7%
in vitro
7%
water vapor
7%
adsorption
7%
stiffness
7%
ductility
7%
wounds
7%
healing
7%
wettability
7%
specific surface area
7%
human cells
7%
lead sulfides
7%
Material Science
Structural Property
100%
Structural Design
100%
Polyacrylonitrile
100%
Young's Modulus
9%
Polymer
9%
Wettability
9%
Ductility
9%
Nitrogen Adsorption
9%
Electrospinning
9%
Water Vapor
9%