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从葡萄嫩枝中生产纤维素纳米晶体及其在纳米复合材料开发中的应用。

Production of cellulose nanocrystals from vine shoots and their use for the development of nanocomposite materials.

机构信息

Materials Science and Nano-engineering Department, Mohammed VI Polytechnic University, Lot 660 - Hay Moulay Rachid, 43150 Benguerir, Morocco.

Materials Science and Nano-engineering Department, Mohammed VI Polytechnic University, Lot 660 - Hay Moulay Rachid, 43150 Benguerir, Morocco.

出版信息

Int J Biol Macromol. 2018 Oct 1;117:592-600. doi: 10.1016/j.ijbiomac.2018.05.201. Epub 2018 May 28.

Abstract

In the present work, cellulose nanocrystals (CNC) were produced from vine shoots waste using chemical treatments followed by acid hydrolysis process. FTIR analysis confirmed that the non-cellulosic components were progressively removed during the chemical treatments, and the final obtained materials are composed of pure cellulose. AFM and TEM observations showed that the extracted CNC possess a needle-like shape with an average length of 456 nm and an average diameter of 14 nm, giving rise to an average aspect ratio of about 32. The as-extracted CNC exhibit a cellulose I structure with high crystallinity index (82%), as determined by XRD characterization. Importantly, the resulted CNC provide a higher thermal stability in comparison with CNC extracted from other resources, using the same extraction process. The isolated CNC's surface charge density was evaluated by XPS analysis and resulted in ~2.0 sulfate groups per 100 anhydroglucose units. In order to identify the reinforcing ability of the new extracted CNC, Carboxymethyl cellulose nanocomposite films were prepared with various CNC contents (1, 3, 5, 8 wt%) and their mechanical properties were investigated by uniaxial tensile test. The results showed that the as-extracted CNC displayed a higher reinforcing ability for nanocomposite materials.

摘要

在本工作中,采用化学处理后酸水解的方法,从葡萄藤废料中制备出纤维素纳米晶(CNC)。傅里叶变换红外(FTIR)分析证实,在化学处理过程中,非纤维素成分逐渐被去除,最终得到的材料由纯纤维素组成。原子力显微镜(AFM)和透射电子显微镜(TEM)观察表明,提取的 CNC 具有针状形状,平均长度为 456nm,平均直径为 14nm,平均纵横比约为 32。通过 X 射线衍射(XRD)特性分析表明,所提取的 CNC 具有纤维素 I 结构和较高的结晶度指数(82%)。重要的是,与使用相同提取工艺从其他资源中提取的 CNC 相比,所得到的 CNC 具有更高的热稳定性。通过 X 射线光电子能谱(XPS)分析评估了分离的 CNC 的表面电荷密度,结果表明每 100 个无水葡萄糖单元约有 2.0 个硫酸盐基团。为了确定新提取的 CNC 的增强能力,制备了具有不同 CNC 含量(1、3、5、8wt%)的羧甲基纤维素纳米复合材料薄膜,并通过单轴拉伸试验研究了它们的力学性能。结果表明,所提取的 CNC 对纳米复合材料具有更高的增强能力。

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