Enzymatic hydrolysis combined with mechanical shearing and high-pressure homogenization for nanoscale cellulose fibrils and strong gels.
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Summary
Mild enzymatic hydrolysis has been introduced and combined with mechanical shearing and a high-pressure homogenization, leading to a controlled fibrillation down to nanoscale and a network of long and highly entangled cellulose I elements.
- Type
- article
- Published
- 2007-05-03
- Cited by
- 1,886
- References
- 21
- OpenAlex
- https://openalex.org/W2001245625
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1828333
Keywords
Cellulose, Shearing (physics), Nanoscopic scale, Enzymatic hydrolysis, Materials science
References
Cited by
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- Biofabrication, Biomechanics and Biocompatibility of Nanocellulose-based Scaffolds for Auricular Cartilage Regeneration
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- Modification chimique de surface de NanoFibrilles de Cellulose (NFC)
- Microfibrillated cellulose : Energy-efficient preparation techniques and key properties
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- NANOCELLULOSE BASED FILMS IMPROVED MECHANICAL AND GAS BARRIER PROPERTIES
- Orientation of elongated particles in shear and extensional flow
- Mechanical Pulp Based Nano-ligno-cellulose : Production, Characterisation and their Effect on Paper Properties
- Développement de nouveaux matériaux d'emballage à partir de micro- et nano-fibrilles de cellulose
- Nanocellulose in pigment coatings : Aspects of barrier properties and printability in offset
- Molecular Interactions in Thin Films of Biopolymers, Colloids and Synthetic Polyelectrolytes
- Structural characterization of cellulosic materials using x-ray and neutron scattering
- Concentration effect of TEMPO-oxidized nanofibrillated cellulose aqueous suspensions on the flow instabilities and small-angle X-ray scattering structural characterization
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