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Preparation of cellulose nanocrystal from tobacco-stem and its application in ethyl cellulose film as a reinforcing agent

机译:从烟草茎中制备纤维素纳米晶体及其在乙基纤维素薄膜中的应用作为增强剂

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摘要

The brittleness of ethyl cellulose (EC) film limited its full applications, and the addition of plasticizers is one of the most common methods to reduce its brittleness. However, the mechanical properties are normally dropped with the addition of plasticizers. Herein, cellulose nanocrystal (CNC) was chosen as a reinforcing agent to improve its mechanical properties. CNC was firstly extracted from the tobacco-stem and then modified by epoxidized soybean oil (ESO) via ring-opening grafting to obtain epoxidized soybean oil grafting CNC (ECNC). The grafting effect was evaluated by FTIR and XPS. After that, the films of ECNC/EC nanocomposites were prepared by the solution-casting method, and their mechanical, thermal and optical properties and fracture morphology were investigated. The results showed that at 4 phr loading of ECNC, the tensile strength of the nanocomposite film was up to 43.7 Mpa (about twice as much as that of the EC film plasticized by ESO), and the elongation at break was not influenced. Moreover, a higher thermal decomposition temperature was achieved for the ECNC/EC films. Besides, owing to the good dispersion, ECNC had no significant impact on the transparency, and the films presented high light transmittance in the visible light region.
机译:乙基纤维素(EC)薄膜的脆性限制了其完全应用,并添加增塑剂是降低其脆性的最常用方法之一。然而,在添加增塑剂时,力学性能通常掉落。这里,选择纤维素纳米晶(CNC)作为增强剂以改善其机械性能。首先从烟草茎中提取CNC,然后通过环氧化豆油(ESO)通过开环接枝改性,得到环氧化大豆油嫁接CNC(ECNC)。通过FTIR和XPS评估嫁接效果。之后,通过溶液浇铸方法制备ECNC / EC纳米复合材料的薄膜,并研究了它们的机械,热和光学性质和裂缝形态。结果表明,在4phr加载4Chc时,纳米复合膜的拉伸强度高达43.7MPa(约为ESO增塑的EC膜的约两倍),并且断裂的伸长率不会影响。此外,对ECNC / EC膜实现了更高的热分解温度。此外,由于良好的分散,ECNC对透明度没有显着影响,并且薄膜在可见光区域中呈现出高透光率。

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