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Rheological and NMR Studies of Cellulose Dissolution in the Ionic Liquid BmimAc

Katherine S. Lefroy, Brent S. Murray, Michael E. Ries

2021The Journal of Physical Chemistry B23 citationsDOIOpen Access PDF

Abstract

) for flow, diffusion, and relaxation were determined. We demonstrate that temperature and cellulose concentration have different effects on short- and long-range interactions.

Topics & Concepts

Ionic liquidRheologyCelluloseViscosityRelaxation (psychology)ChemistryDiffusionArrhenius equationDissolutionPolymerAnalytical Chemistry (journal)Materials scienceThermodynamicsPhysical chemistryOrganic chemistryActivation energyPhysicsComposite materialPsychologySocial psychologyCatalysisAdvanced Cellulose Research StudiesIonic liquids properties and applicationsLignin and Wood Chemistry
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