Structure of Sodium Carboxymethyl Cellulose Aqueous Solutions: A SANS and Rheology Study
File(s)polb23657.pdf (453.71 KB)
Published version
Author(s)
Lopez, CG
Rogers, SE
Colby, RH
Graham, P
Cabral, JT
Type
Journal Article
Abstract
We report a small angle neutron scattering (SANS) and rheology study of cellulose derivative polyelectrolyte sodium carboxymethyl cellulose with a degree of substitution of 1.2. Using SANS, we establish that this polymer is molecularly dissolved in water with a locally stiff conformation with a stretching parameter inline image. We determine the cross sectional radius of the chain ( inline image 3.4 Å) and the scaling of the correlation length with concentration (ξ = 296 c−1∕2Å for c in g/L) is found to remain unchanged from the semidilute to concentrated crossover as identified by rheology. Viscosity measurements are found to be in qualitative agreement with scaling theory predictions for flexible polyelectrolytes exhibiting semidilute unentangled and entangled regimes, followed by what appears to be a crossover to neutral polymer concentration dependence of viscosity at high concentrations. Yet those higher concentrations, in the concentrated regime defined by rheology, still exhibit a peak in the scattering function that indicates a correlation length that continues to scale as
Date Issued
2015-02-24
Date Acceptance
2014-12-05
Citation
Journal of Polymer Science Part B-Polymer Physics, 2015, 53 (7), pp.492-501
ISSN
1099-0488
Publisher
Wiley
Start Page
492
End Page
501
Journal / Book Title
Journal of Polymer Science Part B-Polymer Physics
Volume
53
Issue
7
Copyright Statement
© 2014 The Authors. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and
reproduction in any medium, provided the original work is properly cited.
reproduction in any medium, provided the original work is properly cited.
License URL
Subjects
Science & Technology
Physical Sciences
Polymer Science
polyelectrolytes
cellulose
neutron scattering
rheology
structural characterization
water-soluble polymers
SMALL-ANGLE SCATTERING
X-RAY-SCATTERING
POLYELECTROLYTE SOLUTIONS
IONIC-STRENGTH
NATURAL POLYELECTROLYTE
COUNTERION CONDENSATION
PERSISTENCE LENGTH
LIGHT-SCATTERING
SALT
SEMIDILUTE
Publication Status
Published