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Nanocomposite Films Based on Xylan-Rich Hemicelluloses and Cellulose Nanofibers with Enhanced Mechanical Properties

机译:基于富含木聚糖的半纤维素和具有增强的机械性能的纤维素纳米纤维的纳米复合薄膜

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摘要

Interest in xylan-rich hemicelluloses (XH) film is growing, and efforts have been made to prepare XH films with improved mechanical properties. This work described an effective approach to produce nanocomposite films with enhanced mechanical properties by incorporation of cellulose nanofibers (CNFs) into XH. Aqueous dispersions of XH (64—75 wt %), sorbitol (16—25 wt %), and CNF (0—20 wt %) were cast at a temperature of 23 °C and 50% relative humidity. The surface morphology of the films was revealed by scanning electron microscopy (SEM) and atomic force microscopy (AFM). The thermal properties and crystal structure of the films were evaluated by thermal analysis (TG) and X-ray diffraction (XRD). The surface of XH films with and without CNF was composed primarily of nanonodules, and CNFs were embedded in the XH matrix. Freeze-dried XH powder was amorphous, whereas the films with and without CNF showed a distinct peak at around 2θ = 18°, which suggested that XH molecules aggregated or reordered in the casting solution or during water evaporation. Furthermore, the nanocomposite films had improved thermal stability. XH film with 25 wt % plasticizer (sorbitol, based on dry XH weight) showed poor mechanical properties, whereas incorporation of CNF (5—20 wt %, based on the total dry mixture) into the film resulted in enhanced mechanical properties due to the high aspect ratio and mechanical strength of CNF and strong interactions between CNF and XH matrix This effective method makes it possible to produce hemicellulose-based biomaterials of high quality.
机译:对富含木聚糖的半纤维素(XH)膜的兴趣正在增长,并且已经做出努力来制备具有改善的机械性能的XH膜。这项工作描述了通过将纤维素纳米纤维(CNF)掺入XH中来生产具有增强的机械性能的纳米复合薄膜的有效方法。 XH(64-75 wt%),山梨糖醇(16-25 wt%)和CNF(0-20 wt%)的水分散体在23°C和50%相对湿度的条件下流延。通过扫描电子显微镜(SEM)和原子力显微镜(AFM)揭示了膜的表面形态。通过热分析(TG)和X射线衍射(XRD)评价膜的热性质和晶体结构。具有和不具有CNF的XH膜的表面主要由纳米节组成,并且CNF被嵌入在XH基质中。冷冻干燥的XH粉末是无定形的,而有和没有CNF的薄膜在2θ= 18°附近显示出一个明显的峰,这表明XH分子在流延溶液中或在水蒸发过程中聚集或重新排列。此外,纳米复合膜具有改善的热稳定性。具有25 wt%增塑剂(山梨糖醇,基于干XH重量)的XH膜显示出较差的机械性能,而将CNF(基于总干混合物的5-20 wt%)掺入膜中,则由于机械性能增强CNF的高长宽比和机械强度以及CNF与XH基质之间的强相互作用这种有效的方法使得可以生产高质量的半纤维素基生物材料。

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