首页> 外文会议>IUPAC 10th International conference on novel materials and their synthesis: Book of abstracts >PREPARATION OF SELF-ASSEMBLED CHITIN NANOFIBERS AND THEIR COMPOSITES WITH CELLULOSE DERIVATIVES
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PREPARATION OF SELF-ASSEMBLED CHITIN NANOFIBERS AND THEIR COMPOSITES WITH CELLULOSE DERIVATIVES

机译:自组装甲壳素纳米纤维及其与纤维素衍生物的复合材料的制备

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Of the many kinds of polysaccharides, chitin is one of the most abundant polysaccharides. The author found that an ionic liquid, 1-allyl-3-methylimidazolium bromide (AMIMBr), dissolved chitin in concentrations up to~5% (w/w) and mixtures of the higher amounts of chitin with AMIMBr gave ion gels. When the ion gel of chitin with AMIMBr was immersed in methanol, followed by sonication, the regenerated chitin formed nanofibers according to self-assembling procedure.The SEM image of the dispersion showed morphology of the nanofibers in with ca.20-60 nm in width and several hundred nanometers in length. On the basis of the above studies, the preparation of chit in nanofiber/ carboxymethyl cellulose (CMC) composite films was investigated by their electrostatic interaction. CMC is one of the representative cellulose derivatives and has acidic nature. The CMC films, which were prepared by casting technique, were immersed in the aforementioned chitin nanofiber dispersions with methanol, followed by centrifugation to obtain the desired composite films. The amounts of the absorbed chitin nanofibers on the films were calculated by the weight increases after the above compatibilization procedure. The SEM and IR of the products suggested the presence of chitin nanofibers on the films. The mechanical properties of the composite films were evaluated by tensile testing, which suggested the reinforcing effect of chitin nanofibers present on the CMC films.
机译:在多种多糖中,几丁质是最丰富的多糖之一。作者发现一种离子液体1-烯丙基-3-甲基咪唑鎓溴化物(AMIMBr)溶解的几丁质浓度最高为5%(w / w),而更高含量的几丁质与AMIMBr的混合物产生了离子凝胶。将几丁质与AMIMBr的离子凝胶浸入甲醇中,然后超声处理后,再生的几丁质根据自组装程序形成纳米纤维。分散体的SEM图像显示了纳米纤维的形态,其宽度约为20-60 nm。和几百纳米的长度。在上述研究的基础上,通过静电相互作用研究了纳米纤维/羧甲基纤维素(CMC)复合薄膜中棉絮的制备。 CMC是代表性的纤维素衍生物之一,具有酸性。将通过流延技术制备的CMC膜用甲醇浸入上述几丁质纳米纤维分散体中,然后离心以获得所需的复合膜。在上述增容步骤之后,通过增加重量来计算膜上被吸收的几丁质纳米纤维的量。产品的SEM和IR表明膜上存在几丁质纳米纤维。通过拉伸试验评估了复合膜的机械性能,这表明存在于CMC膜上的几丁质纳米纤维的增强作用。

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