Review of Hydrogels and Aerogels Containing Nanocellulose
Обзор гидрогелей и аэрогелей, содержащих нан целлюлозу
2017-04-16
SCID: 54.1/t8pprbdq
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cellulose nanocrystalscellulose nanofibrilscross-linking strategiesnanocellulose aerogelsnanocellulose hydrogels
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Abstract (AI)
Abstract Naturally derived cellulose nanocrystals (CNCs) and cellulose nanofibrils (CNFs) are emerging nanomaterials that display high strength, high surface area, and tunable surface chemistry, allowing for controlled interactions with polymers, nanoparticles, small molecules, and biological materials. Industrial production of nanocelluloses is increasing rapidly with several companies already producing on the tons-per-day scale, intensifying the quest for viable products across many sectors. While the hydrophilicity of the nanocellulose interface has posed a challenge to the use of CNCs and CNFs as reinforcing agents in conventional plastics, it is a significant benefit for creating reinforced or structured hydrogel composites (or, when dried, aerogels) exhibiting both mechanical reinforcement and a host of other desirable properties. In this context, this Review describes the quickly growing field of hydrogels and aerogels incorporating nanocelluloses; over 200 references are summarized in comprehensive tables covering the chemistry, preparation, properties, and applications of ?nanocellulose-only? and ?nanocellulose-containing? gels. Physical and chemical cross-linking strategies, postmodification steps, and routes to control gel structure are discussed, along with key developments and ongoing challenges in the field. Nanocellulose hydrogels and aerogels show great promise in a wide range of biomedical, energy storage, construction, separations, cosmetic, and food applications.
Key Findings
1
Cellulose nanocrystals and nanofibrils provide high strength, surface area, and tunable chemistry for designing multifunctional gel composites.
2
Nanocellulose hydrogels and aerogels show promise for biomedical, energy-storage, construction, separation, cosmetic, and food applications, while challenges remain.
3
Nanocellulose hydrophilicity, challenging for reinforcement in conventional plastics, benefits the formation of mechanically reinforced hydrogels and aerogels.
4
Physical and chemical cross-linking, postmodification, and structural-control strategies are central approaches for tailoring nanocellulose hydrogel and aerogel performance.
5
The review synthesizes over 200 references on nanocellulose-only and nanocellulose-containing gels, covering chemistry, preparation, properties, and applications.
Research Object
Hydrogels and aerogels incorporating nanocellulose, including cellulose nanocrystals (CNCs) and cellulose nanofibrils (CNFs)
Research Subject
Their chemistry, preparation, cross-linking, structure control, properties, applications, and ongoing challenges
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2017-04-16
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