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Chirality and bound water in the hierarchical cellulose structure
Antti Paajanen
, Sara Ceccherini
, Thaddeus Maloney
,
Jukka Ketoja
Aalto University
Research output
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Contribution to conference
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Conference Abstract
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Scientific
›
peer-review
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Keyphrases
Ambient Conditions
20%
Amphiphilic
20%
Birch Kraft Pulp
20%
Bound Water
100%
Cellulose
40%
Cellulose Chain
20%
Cellulose Fibers
20%
Cellulose Structure
100%
Chirality
100%
Co-crystallization
20%
Conformational Diseases
20%
Fiber Level
20%
Freezing Bound Water
20%
Hemicellulose
20%
Hemicellulose Content
20%
Hierarchical Level
20%
Hierarchical Structure
20%
Hierarchical Systems
20%
Macrofibril
80%
Microfibrils
80%
Microscopic Characterization
20%
Molecular Dynamics Simulation
20%
Molecular Water
20%
Network Assembly
20%
Porosity
20%
Right-handed
20%
Specific Surface Area
20%
Strongly Coupled
20%
Structural Features
20%
Surface Binding
20%
Twist Rate
40%
Water Interaction
20%
Water Layer
20%
Water Molecule
20%
Wood Fiber
20%
INIS
cellulose
100%
chains
37%
chirality
100%
comparative evaluations
12%
coupling
12%
crystallization
12%
dynamics
12%
fibers
37%
freezing
25%
hemicellulose
25%
interactions
12%
layers
12%
levels
37%
modeling
12%
molecular dynamics method
12%
molecules
12%
porosity
12%
prediction
25%
pulps
12%
simulation
62%
specific surface area
12%
water
100%
water content
25%
wood
12%
Chemistry
Cellulose
100%
Chirality
100%
Co Crystallization
20%
Hemicellulose
40%
Molecular Dynamics
20%
Porosity
20%
specific surface area
20%
Material Science
Chirality
100%
Kraft Pulp
33%
Chemical Engineering
Water Content
100%