"PREPARATION AND CHARACTERIZATION OF CHITIN HYDROGEL COMPOSITED WITH HALLOYSITE CLAY SOLUTION VIA PHASE INVERSION "

IF 1.3 4区 农林科学 Q2 MATERIALS SCIENCE, PAPER & WOOD
K. Nguyen
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引用次数: 0

Abstract

In this study, halloysite clay (HC), a reinforcing nanofiller, was mixed with 1 and 1.5% chitin solutions to prepare chitin–halloysite clay composite hydrogel by phase inversion under water vapor atmosphere at 25 °C. Chitin, extracted chemically from crab shell, was dissolved in N,N-dimethyl acetamide in the presence of 5% lithium chloride (DMAc/5% LiCl), and then different amounts of HC solution (0, 3, 5 and 7%) were added to evaluate the effect of HC on the fundamental properties of the obtained composite hydrogels. After the green route of preparation, the diameter and thickness of the hydrogel samples seemed to remain the same, while varying the concentrations of chitin and inorganic filler solution. As a result, in the case of the 1% chitin hydrogel, the tensile strength of the composite films increased from 335.9 to 489.8 kPa, while the elongation was around 61.3 and 86.0% with the addition of 0 and 7% HC solution. With the increase in the chitin content to 1.5%, the mechanical strength of the resultant composite hydrogels was enhanced. Moreover, the reduction in the equilibrium water content confirmed the formation of a composite hydrogel incorporating a well dispersed nanofiller, with good interfacial interaction between the nanofiller and the biopolymer matrix.
相转化法制备和表征哈洛石粘土溶液复合甲壳素水凝胶
在本研究中,将增强纳米填料哈洛石粘土(HC)与1%和1.5%的甲壳素溶液混合,在25°C的水蒸气气氛下通过相转化制备了甲壳素-哈洛石-粘土复合水凝胶。在5%氯化锂(DMAc/5%LiCl)的存在下,将化学从蟹壳中提取的甲壳素溶解在N,N-二甲基乙酰胺中,然后加入不同量的HC溶液(0、3、5和7%),以评估HC对所获得的复合水凝胶的基本性能的影响。在绿色制备路线之后,水凝胶样品的直径和厚度似乎保持不变,同时改变甲壳素和无机填料溶液的浓度。结果,在1%甲壳质水凝胶的情况下,复合膜的拉伸强度从335.9千帕增加到489.8千帕,而添加0和7%的HC溶液时,伸长率分别为61.3%和86.0%。随着甲壳素含量增加到1.5%,所得复合水凝胶的机械强度增强。此外,平衡水含量的降低证实了包含良好分散的纳米填料的复合水凝胶的形成,纳米填料和生物聚合物基体之间具有良好的界面相互作用。
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来源期刊
Cellulose Chemistry and Technology
Cellulose Chemistry and Technology 工程技术-材料科学:纸与木材
CiteScore
2.30
自引率
23.10%
发文量
81
审稿时长
7.3 months
期刊介绍: Cellulose Chemistry and Technology covers the study and exploitation of the industrial applications of carbohydrate polymers in areas such as food, textiles, paper, wood, adhesives, pharmaceuticals, oil field applications and industrial chemistry. Topics include: • studies of structure and properties • biological and industrial development • analytical methods • chemical and microbiological modifications • interactions with other materials
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