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pH-responsive cellulose-chitosan nanocomposite films with slow release of chitosan

机译:壳聚糖缓慢释放的pH-响应纤维素 - 壳聚糖纳米复合膜

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Cellulose-chitosan films were prepared using a physical method in which cellulose and chitosan were separately dissolved via freeze thawing in LiOH/urea and mixed in different proportions, the resulting films being cast and regenerated in water/ethanol. X-ray diffraction and Fourier transform infrared spectroscopy (FT-IR) spectroscopy verified the composition changes in the nanocomposites due to different mixing ratios between the polymers. Tensile stress-strain measurements indicated that the mechanical performance of the cellulose-chitosan nanocomposites slightly worsened with increasing chitosan content compared with that of films comprising cellulose alone. Field emission scanning electron microscopy revealed the spontaneous formation of nanofibers in the films; these nanofibers were subsequently ordered into lamellar structures. Water uptake and microscopy analysis of film thickness changes indicated that the swelling dramatically increased at lower pH and with increasing chitosan content, this being ascribed to the Gibbs-Donnan effect. Slow material loss appeared at acidic pH, as indicated by a loss of weight, and quantitative FT-IR analysis confirmed that chitosan was the main component released. A sample containing 75% chitosan reached a maximum swelling ratio and weight loss of 1500% and 55 wt%, respectively, after 12 h at pH 3. The study presents a novel way of preparing pH-responsive cellulose-chitosan nanocomposites with slow-release characteristics using an environmentally friendly procedure and without any chemical reactions.
机译:使用一种物理方法制备纤维素 - 壳聚糖膜,其中通过在LiOH / urea中通过冷冻解冻分别溶解纤维素和壳聚糖并以不同的比例混合,所得薄膜在水/乙醇中浇铸和再生。 X射线衍射和傅里叶变换红外光谱(FT-IR)光谱验证了由于聚合物之间的不同混合比而在纳米复合材料中的组成变化。拉伸应力 - 应变测量表明,纤维素 - 壳聚糖纳米复合材料的力学性能随着壳聚糖含量的增加而略微恶化,与单独的纤维素的薄膜相比,壳聚糖含量增加。场发射扫描电子显微镜显示薄膜中纳米纤维的自发形成;随后将这些纳米纤维排序成层状结构。薄膜厚度变化的水吸收和显微镜分析表明,肿胀在较低的pH下显着增加,并且随着壳聚糖含量的增加,这归因于Gibbs-Donnan效应。酸性pH值出现慢的物质损失,如重量损失所示,并且定量FT-IR分析证实壳聚糖是释放的主要成分。在pH 3的12小时后,含有75%壳聚糖的样品分别达到最大溶胀比,体重减轻1500%和55wt%,该研究提出了一种用缓慢释放制备pH-响应纤维素 - 壳聚糖纳米复合材料的新方法使用环保程序和没有任何化学反应的特征。

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