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High-Strength Nanocellulose-Talc Hybrid Barrier Films

机译:高强度纳米纤维素滑石粉复合阻隔膜

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摘要

Hybrid organic-inorganic films mimicking natural nacre-like composite structures were fabricated from cellulose nanofibers obtained from sequential periodate- chlorite oxidation treatment and talc platelets, using a simple vacuum-filtration method. As a pretreatment, commercial talc aggregates were individualized into well-dispersed talc platelets using a wet stirred media mill with high-shear conditions to promote the homogeneity and mechanical characteristics of hybrids. The nanofiber-talc hybrids, which had talc contents from 1 to 50 wt %, were all flexible in bending, and possessed tensile strength and Young's modulus values up to 211 ±3 MPa and 12 ± 1 GPa, respectively, the values being remarkably higher than those reported previously for nanofibrillated cellulose-talc films. Because of the lamellar and well-organized structure of hybrids in which the talc platelets were evenly embedded, they possessed a small pore size and good oxygen barrier properties, as indicated by the preliminary results. The talc platelets decreased the moisture adsorption of highly talc-loaded hybrids, although they still exhibited hydrophilic surface characteristics in terms of contact angles.
机译:使用简单的真空过滤方法,由纤维素纳米纤维制成的模仿天然珍珠质复合结构的杂化有机-无机薄膜是通过连续高碘酸盐-亚氯酸盐氧化处理和滑石片制成的。作为预处理,使用高剪切条件的湿式搅拌研磨机将商品滑石聚集体个体化为分散良好的滑石片,以促进杂种的均质性和机械特性。滑石含量为1至50 wt%的纳米纤维-滑石杂化物均具有挠性,并且具有高达211±3 MPa和12±1 GPa的拉伸强度和杨氏模量,其值明显更高。比以前报道的那些纳米原纤化纤维素滑石薄膜要多。如初步结果所示,由于滑石薄片均匀地嵌入其中的杂种的层状和组织良好的结构,它们具有较小的孔径和良好的氧气阻隔性能。尽管在接触角方面它们仍然表现出亲水性表面特征,但是滑石片血小板降低了高滑石负载的杂化物的水分吸附。

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