Preparation of cellulose-based hydrogel: a review
Получение гидрогелей на основе целлюлозы: обзор
2020-12-09
SCID: 54.1/5jtk676t
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Cellulose derivativesCellulose-based hydrogelCrosslinking techniquesIonic liquidsThree-dimensional network
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Abstract (AI)
This paper reviews the preparation of hydrogel based on cellulose and its derivatives. Cellulose is the most abundant natural organic polymer on earth. To date, the exploitation of cellulose has been studied in various applications. However, cellulose has low solubility in water and most organic solvents. Thus, specific solvent systems such as NaOH/urea, NaOH/thiourea, lithium chloride, and ionic liquids need to be employed to vary cellulose application. The hydrogel is a 3D network structure that can retain a tremendous amount of water and highly dependent on the crosslinking property. It is important to use a compatible technique for a specific purpose. The paper discusses the materials and crosslinking techniques via chemical, physical, and polymerization, to produce hydrogels from dissolved cellulose and its derivatives.
Key Findings
1
Cellulose-based hydrogels form three-dimensional networks capable of retaining substantial amounts of water, with performance strongly dependent on crosslinking.
2
Cellulose’s low solubility in water and most organic solvents necessitates specialized solvent systems, including NaOH/urea, NaOH/thiourea, lithium chloride, and ionic liquids.
3
Selecting a crosslinking technique compatible with the intended application is essential for cellulose-based hydrogel preparation.
4
The review categorizes crosslinking approaches as chemical, physical, and polymerization techniques for producing hydrogels from dissolved cellulose and its derivatives.
5
The review surveys preparation methods for hydrogels based on cellulose and its derivatives.
Research Object
cellulose-based hydrogels made from cellulose and its derivatives
Research Subject
materials, solvent systems, and chemical, physical, and polymerization crosslinking techniques for hydrogel preparation
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2020-12-09
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