4.7 Review

Assembling nanocelluloses into fibrous materials and their emerging applications

Journal

CARBOHYDRATE POLYMERS
Volume 299, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.carbpol.2022.120008

Keywords

Nanocellulose; Cellulose nano crystalline; Bacterial cellulose; Fibrous material; Fiber

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This review provides an overview of nanocellulose properties, historical development, and assembly techniques, and discusses the design rules and influencing factors of fibrous materials' structure and function. The emerging applications of nanocellulose-based fibrous materials are highlighted. Finally, future research trends within this field are proposed.
Nanocelluloses, derived from various plants or specific bacteria, represent the renewable and sophisticated nano building blocks for emerging functional materials. Especially, the assembly of nanocelluloses as fibrous materials can mimic the structural organization of their natural counterparts to integrate various functions, thus holding great promise for potential applications in various fields, such as electrical device, fire retardance, sensing, medical antibiosis, and drug release. Due to the advantages of nanocelluloses, a variety of fibrous materials have been fabricated with the assistance of advanced techniques, and their applications have attracted great interest in the past decade. This review begins with an overview of nanocellulose properties followed by the historical development of assembling processes. There will be a focus on assembling techniques, including traditional methods (wet spinning, dry spinning, and electrostatic spinning) and advanced methods (self-assembly, micro -fluidic, and 3D printing). In particular, the design rules and various influencing factors of assembling processes related to the structure and function of fibrous materials are introduced and discussed in detail. Then, the emerging applications of these nanocellulose-based fibrous materials are highlighted. Finally, some perspectives, key opportunities, and critical challenges on future research trends within this field are proposed.

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