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Cellulose hydrogels prepared from micron-sized bamboo cellulose fibers

机译:由微米级竹纤维素纤维制成的纤维素水凝胶

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We demonstrated for the first time that dimensionally stable hydrogels could be obtained from bamboo pulp fibers through dialysis against distilled water followed by a short time of ultrasonic treatment. Micron-sized short fibers rather than cellulose nanofibrils constituted the majority of fibers in the hydrogels. During the pulping process with HNO3 and KClO3, carboxylic groups could be introduced to cellulose due to the mild oxidation of hydroxyl groups. When presented in aqueous NaOH, the carboxylic groups could be converted into their sodium salt form. The subsequent dialysis treatment against water made the negatively charged —COO- groups extensively exposed. The negatively charged cellulose fibers could induce considerable electrostatic repulsion between them, which was discovered to govern the formation of hydrogels. In addition, it was revealed that homogeneous hydrogels could be formed when the pH was at 7,9 and 11. However, when salt was added, no dimensionally stable hydrogel was obtained.
机译:我们首次证明,通过对蒸馏水进行透析,然后在短时间内进行超声波处理,可以从竹浆纤维中获得尺寸稳定的水凝胶。微米大小的短纤维而不是纤维素纳米纤维构成了水凝胶中的大部分纤维。在用HNO3和KClO3进行制浆的过程中,由于羟基的轻度氧化,羧基可以引入纤维素中。当存在于NaOH水溶液中时,羧基可以转化为它们的钠盐形式。随后的水透析处理使带负电的-COO-基团大量暴露。带负电荷的纤维素纤维会在它们之间引起相当大的静电排斥,这被发现可以控制水凝胶的形成。另外,揭示了当pH在7,9和11时可以形成均质的水凝胶。但是,当添加盐时,没有获得尺寸稳定的水凝胶。

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