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Multiscale flow alignment in cellulose nanocrystals controlled by surface topology
Ases Akas Mishra
,
Amit Kumar Sonker
, Kesavan Sekar
, Marko Bek
, Ann E. Terry
, Kim Nygård
, Stuart Ansell
, Gunnar Westman
, Roland Kádár
*
*
Corresponding author for this work
BA5408 Packaging solutions
Chalmers University of Technology
Lund University
Research output
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Keyphrases
Cellulose Nanocrystals
100%
Linker
100%
High-order
100%
Surface Topology
100%
Flow Alignment
100%
Polarization Imaging
100%
Small-angle X-ray Scattering
100%
Multi-scale Flow
100%
Cellulose Nanocrystal Suspensions
66%
Anisotropy Factor
66%
Rheology
33%
Distribution Function
33%
Birefringence
33%
Control Variables
33%
In Situ Experiment
33%
Topology Control
33%
Azetidinium
33%
Modified System
33%
Anisotropy Distribution
33%
Dialkyl
33%
Maier-Saupe
33%
Maltese Cross
33%
INIS
surfaces
100%
cellulose
100%
topology
100%
nanocrystals
100%
alignment
100%
nanostructures
75%
x-ray diffraction
37%
anisotropy
37%
suspensions
25%
control
12%
decoupling
12%
rheology
12%
distribution functions
12%
birefringence
12%
Material Science
Cellulose Nanocrystals
100%
Anisotropy
75%
Rheology
25%
Birefringence
25%