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Isolation of Thermally Stable Cellulose Nanocrystals by Phosphoric Acid Hydrolysis

Biomacromolecules · 2013 · Vol. 14(4) · pp. 1223–1230
Sandra Camarero‐EspinosaTobias KuhntE. Johan FosterChristoph Weder

Abstract

On account of their intriguing mechanical properties, low cost, and renewable nature, high-aspect-ratio cellulose nanocrystals (CNCs) are an attractive component for many nanomaterials. Due to hydrogen bonding between their surface hydroxyl groups, unmodified CNCs (H-CNCs) aggregate easily and are often difficult to disperse. It is shown here that on account of ionic repulsion between charged surface groups, slightly phosphorylated CNCs (P-CNCs, average dimensions 31 ± 14 × 316 ± 127 nm, surface charge density = 10.8 ± 2.7 mmol/kg cellulose), prepared by controlled hydrolysis of cotton with phosphoric acid, are readily dispersible and form stable dispersions in polar solvents such as water, dimethyl sulfoxide, and dimethylformamide. Thermogravimetric analyses reveal that these P-CNCs exhibit a much higher thermal stability than partially sulfated CNCs (S-CNCs), which are frequently employed, but suffer from limited thermal stability. Nanocomposites of an ethylene oxide-epichlorohydrin copolymer and H-CNCs, S-CNCs, and P-CNCs were prepared, and their mechanical properties were studied by dynamic mechanical thermal analysis. The results show that P-CNCs offer a reinforcing capability that is comparable to that of H-CNCs or S-CNCs.

Advanced Cellulose Research StudiesPolysaccharides and Plant Cell WallsLignin and Wood ChemistryCelluloseThermal stabilityChemical engineeringThermogravimetric analysisHydrolysisMaterials sciencePhosphoric acidNanomaterialsNanocelluloseChemistry

MeSH terms

Biocompatible MaterialsCelluloseEpichlorohydrinEthylene OxideHydrolysisPhosphoric AcidsPolymersIonic LiquidsNanoparticlesNanocomposites

Funding

  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
Citations
645
FWCI
18.89
field-weighted impact
References
50
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100%
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References
Flow properties of microcrystalline cellulose suspension prepared by acid treatment of native cellulose
Colloids and Surfaces A Physicochemical and Engineering Aspects · 1998 · 745 citations
THE COLORIMETRIC DETERMINATION OF PHOSPHORUS
Journal of Biological Chemistry · 1925 · 19,069 citations
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