The Colloidal Properties of Nanocellulose

Author:

Benselfelt Tobias123ORCID,Kummer Nico45ORCID,Nordenström Malin12ORCID,Fall Andreas B.6ORCID,Nyström Gustav45ORCID,Wågberg Lars12ORCID

Affiliation:

1. Department of Fibre and Polymer Technology KTH Royal Institute of Technology 100 44 Stockholm Sweden

2. Wallenberg Wood Science Center KTH Royal Institute of Technology 100 44 Stockholm Sweden

3. School of Materials Science and Engineering Nanyang Technological University 639798 Singapore Singapore

4. Laboratory for Cellulose & Wood Materials Empa – Swiss Federal Laboratories for Materials Science and Technology Überlandstrasse 129 8600 Dübendorf Switzerland

5. Department of Health Sciences and Technology ETH Zürich 8092 Zürich Switzerland

6. RISE Bioeconomy 114 28 Stockholm Sweden

Abstract

AbstractNanocelluloses are anisotropic nanoparticles of semicrystalline assemblies of glucan polymers. They have great potential as renewable building blocks in the materials platform of a more sustainable society. As a result, the research on nanocellulose has grown exponentially over the last decades. To fully utilize the properties of nanocelluloses, a fundamental understanding of their colloidal behavior is necessary. As elongated particles with dimensions in a critical nanosize range, their colloidal properties are complex, with several behaviors not covered by classical theories. In this comprehensive Review, we describe the most prominent colloidal behaviors of nanocellulose by combining experimental data and theoretical descriptions. We discuss the preparation and characterization of nanocellulose dispersions, how they form networks at low concentrations, how classical theories cannot describe their behavior, and how they interact with other colloids. We then show examples of how scientists can use this fundamental knowledge to control the assembly of nanocellulose into new materials with exceptional properties. We hope aspiring and established researchers will use this Review as a guide.

Publisher

Wiley

Subject

General Energy,General Materials Science,General Chemical Engineering,Environmental Chemistry

Reference376 articles.

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