4.7 Review

Nanocellulose-Based Nanocomposites for Sustainable Applications: A Review

Journal

NANOMATERIALS
Volume 12, Issue 19, Pages -

Publisher

MDPI
DOI: 10.3390/nano12193483

Keywords

biomass; cellulose; CNF; nanocellulose; nanocomposite; surface modification

Funding

  1. Centre for Research Management and Innovation, Universiti Pertahanan Nasional Malaysia (UPNM)

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This review summarizes the advantages and applications of nanocellulose and discusses the latest developments in its preparation, modification, and emerging applications. It also provides an overview of nanocellulose-based nanocomposites for sustainable applications, starting with the introduction of cellulose and its extraction process, followed by the discussion of surface modification techniques and functionalization strategies. The usage of nanocellulose in various fields and its future market prospects are also discussed.
Nanocellulose has emerged in recent years as one of the most notable green materials available due to its numerous appealing factors, including its non-toxic nature, biodegradability, high aspect ratio, superior mechanical capabilities, remarkable optical properties, anisotropic shape, high mechanical strength, excellent biocompatibility and tailorable surface chemistry. It is proving to be a promising material in a range of applications pertinent to the material engineering to biomedical applications. In this review, recent advances in the preparation, modification, and emerging application of nanocellulose, especially cellulose nanocrystals (CNCs), are described and discussed based on the analysis of the latest investigations. This review presents an overview of general concepts in nanocellulose-based nanocomposites for sustainable applications. Beginning with a brief introduction of cellulose, nanocellulose sources, structural characteristics and the extraction process for those new to the area, we go on to more in-depth content. Following that, the research on techniques used to modify the surface properties of nanocellulose by functionalizing surface hydroxyl groups to impart desirable hydrophilic-hydrophobic balance, as well as their characteristics and functionalization strategies, were explained. The usage of nanocellulose in nanocomposites in versatile fields, as well as novel and foreseen markets of nanocellulose products, are also discussed. Finally, the difficulties, challenges and prospects of materials based on nanocellulose are then discussed in the last section for readers searching for future high-end eco-friendly functional materials.

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