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Sustainable Boron Nitride Nanosheet-Reinforced Cellulose Nanofiber Composite Film with Oxygen Barrier without the Cost of Color and Cytotoxicity

机译:具有氧气阻隔性的可持续氮化硼纳米片增强纤维素纳米纤维复合膜而无需花费颜色和细胞毒性

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摘要

This paper introduces a boron nitride nanosheet (BNNS)-reinforced cellulose nanofiber (CNF) film as a sustainable oxygen barrier film that can potentially be applied in food packaging. Most commodity plastics are oxygen-permeable. CNF exhibits an ideal oxygen transmission rate (OTR) of <1 cc/m2/day in highly controlled conditions. A CNF film typically fabricated by the air drying of a CNF aqueous solution reveals an OTR of 19.08 cc/m2/day. The addition of 0–5 wt % BNNS to the CNF dispersion before drying results in a composite film with highly improved OTR of 4.7 cc/m2/day, which is sufficient for meat and cheese packaging. BNNS as a 2D nanomaterial increases the pathway of oxygen gas and reduces the chances of pinhole formation during film fabrication involving water drying. In addition, BNNS improves the mechanical properties of the CNF films (Young’s modulus and tensile strength) without significant elongation reductions, probably due to the good miscibility of CNF and BNNS in the aqueous solution. Addition of BNNS also produces negligible color change, which is important for film aesthetics. An in vitro cell experiment was performed to reveal the low cytotoxicity of the CNF/BNNS composite. This composite film has great potential as a sustainable high-performance food-packaging material.
机译:本文介绍了一种氮化硼纳米片(BNNS)增强的纤维素纳米纤维(CNF)膜,它是一种可持续的阻氧膜,可潜在地应用于食品包装。大多数商品塑料都是透氧的。在高度受控的条件下,CNF的理想氧气透过率(OTR)为<1 cc / m 2 /天。通常通过空气干燥CNF水溶液制成的CNF膜的OTR为19.08 cc / m 2 /天。干燥前向CNF分散体中添加0-5 wt%BNNS可以使复合膜的OTR大大提高,为4.7 cc / m 2 /天,足以用于肉类和奶酪包装。作为2D纳米材料的BNNS可增加氧气的传播途径,并减少涉及水干燥的薄膜制造过程中形成针孔的机会。此外,BNNS可以改善CNF膜的机械性能(杨氏模量和拉伸强度)而不会显着降低伸长率,这可能是由于CNF和BNNS在水溶液中的良好混溶性所致。 BNNS的添加也会产生可忽略的颜色变化,这对于电影美学而言很重要。进行体外细胞实验以揭示CNF / BNNS复合物的低细胞毒性。这种复合膜作为可持续的高性能食品包装材料具有巨大的潜力。

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