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Facile and green preparation of hemicellulose-based film with elevated hydrophobicity via cross-linking with citric acid

机译:通过与柠檬酸的交联,简便而绿色地制备疏水性增强的半纤维素基薄膜

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Hemicellulose has shown great potential in food packaging due to its excellent biodegradability and low oxygen permeability. However, its strong hydrophilicity leads to poor moisture resistance and hinders its wide application. To address this issue, herein a ternary carboxylic acid, citric acid (CA), was incorporated into hemicellulose as esterifying agent to form a crosslinking structure via the esterification reaction. The CA-modified hemicellulose films showed an increased contact angle of 87.5° ( vs. 40.5° for unmodified film), demonstrating that the hydrophobicity of hemicellulose had been improved significantly. In addition, the esterification/cross-linking modification enhanced oxygen barrier performance with oxygen permeability decreasing from 1053 (cm ~(3) μm) (m ~(2) d kPa) ~(?1) to 1.8 (cm ~(3) μm) (m ~(2) d kPa) ~(?1) . Moreover, the tensile strength rose to a peak value and then fell back at higher CA content. Effect of CA addition on elongation at break exhibited an opposite trend. The modified hemicellulose films with 20% CA addition possessed the highest tensile strength and the lowest elongation at break. Morphology observation with scanning electron microscopy indicated that at CA content exceeding 20%, the modified films were dense with a smooth surface, illustrating the improvement of phase compatibility. A possible mechanism for esterification/cross-linking was proposed to elucidate the connection between CA addition and film performances.
机译:半纤维素由于其出色的生物降解性和低透氧性而在食品包装中显示出巨大潜力。然而,其强的亲水性导致差的耐湿性并妨碍其广泛的应用。为了解决这个问题,在本文中,将三元羧酸柠檬酸(CA)作为酯化剂引入半纤维素中,以通过酯化反应形成交联结构。 CA修饰的半纤维素膜的接触角增加了87.5°(而未修饰的膜则为40.5°),表明半纤维素的疏水性得到了显着改善。此外,酯化/交联改性增强了氧气的阻隔性能,氧气渗透率从1053(cm〜(3)μm)(m〜(2)d kPa)〜(?1)降至1.8(cm〜(3) μm)(m〜(2)d kPa)〜(?1)。此外,拉伸强度上升至峰值,然后在较高的CA含量下回落。添加CA对断裂伸长率的影响呈现相反的趋势。加入20%CA的改性半纤维素膜具有最高的拉伸强度和最低的断裂伸长率。扫描电子显微镜的形态学观察表明,当CA含量超过20%时,改性膜致密且表面光滑,表明相相容性得到改善。提出了一种可能的酯化/交联机理,以阐明CA添加与薄膜性能之间的联系。

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