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Structure, properties and biodegradability of water resistant regenerated cellulose films coated with polyurethane/benzyl konjac glucomannan semi-IPN coating

机译:聚氨酯/苄基魔芋葡甘露聚糖半IPN涂层涂覆的耐水再生纤维素膜的结构,性能和生物降解性

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We prepared a series of novel water-resistant cellulose films by coating castor oil-based polyurethane (PU)/benzyl konjac glucomannan (B-KGM) semi-interpenetrating polymer networks (semi-IPN) on regenerated cellulose (RC) films, which was obtained from cotton linter in 6 wt% NaOH/5 wt% thiourea aqueous solution by coagulating with 5 wt% H2SO4 aqueous solution. The effect of B-KGM content on interfacial structure, thermal stability, mechanical properties in dry and wet states and biodegradability of the coated films were investigated by Fourier transform infrared spectra, ultraviolet spectroscopy, transmission electron microscopy, dynamic mechanical thermal analysis, tensile test and biodegradation test. The results indicate that PU prepolymer molecules in the semi-IPN coating penetrate simultaneously into the RC film, and give rise to a shared PU network between B-KGM and cellulose. B-KGM in the semi-IPN coating layer plays an important role in enhancement of the mechanical properties, water resistivity, thermal stability, light transmittance of the coated films. The tensile strength of the coated films increases from 86.3 to 114.9 MPa in dry state and from 33.8 to 56.4 MPa in wet state, as well as the light transmittance at 800 nm from 79% to 90% when B-KGM content increases from 0 wt% to 80 wt%. The biodegradation rates of the coated films increase with an increase of B-KGM content and the their biodegradation half-time is less than 80 days. (C) 2004 Published by Elsevier Ltd.
机译:我们通过在再生纤维素(RC)膜上涂覆蓖麻油基聚氨酯(PU)/苄基魔芋葡甘露聚糖(B-KGM)半互穿聚合物网络(semi-IPN),制备了一系列新型的耐水纤维素膜。通过与5 wt%的H2SO4水溶液凝结,在6 wt%的NaOH / 5 wt%的硫脲水溶液中从棉短绒中制得。通过傅立叶变换红外光谱,紫外光谱,透射电子显微镜,动态力学热分析,拉伸试验和拉伸试验研究了B-KGM含量对涂膜界面结构,热稳定性,干态和湿态下力学性能以及生物降解性的影响。生物降解测试。结果表明,半IPN涂层中的PU预聚物分子同时渗透到RC膜中,并在B-KGM和纤维素之间形成共享的PU网络。半IPN涂层中的B-KGM在增强涂膜的机械性能,耐水性,热稳定性,透光率方面起着重要作用。当B-KGM含量从0 wt%增加时,涂膜的拉伸强度在干态下从86.3 MPa增加到114.9 MPa,在湿态下从33.8 MPa增加到56.4 MPa,并且800 nm处的透光率从79%增加到90%。 %至80 wt%。涂膜的生物降解率随B-KGM含量的增加而增加,其半衰期小于80天。 (C)2004由Elsevier Ltd.出版

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