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Quantitative assessment of water interactions of cellulose nanocrystals
Tekla Tammelin
, Elina Niinivaara
, Eero Kontturi
Aalto University
Research output
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Contribution to conference
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Conference Abstract
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Scientific
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peer-review
Overview
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INIS
assessments
100%
interactions
100%
water
100%
cellulose
100%
nanocrystals
100%
surfaces
33%
monitoring
33%
crystals
33%
quartz
33%
microbalances
33%
layers
16%
comparative evaluations
16%
data
16%
water vapor
16%
uptake
16%
solids
16%
humidity
16%
resonance
16%
swelling
16%
plasmons
16%
rheology
16%
Keyphrases
Cellulose Nanocrystals
100%
Water Interaction
100%
Quartz Crystal Microbalance with Dissipation (QCM-D)
33%
Nanocrystal Networks
33%
Humidity
16%
Water Vapour Uptake
16%
Uptake Ability
16%
Rheology
16%
Nanoporous
16%
Surface Plasmon Resonance
16%
Nanocrystal Surface
16%
Solid State
16%
Water-induced
16%
2D Layer
16%
Direct Approach
16%
Strongly Interacting
16%
Material Science
Cellulose Nanocrystals
100%
Rheology
16%
Water Vapor
16%
Surface Plasmon Resonance
16%