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首页> 外文期刊>Journal of Renewable Materials >Preparation and Characterization of the Nanocomposites from Chemically Modified Nanocellulose and Poly(lactic acid)
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Preparation and Characterization of the Nanocomposites from Chemically Modified Nanocellulose and Poly(lactic acid)

机译:化学改性纳米纤维素和聚(乳酸)的纳米复合材料的制备与表征

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摘要

Cellulose nanocrystals (CNCs) are renewable and sustainable filler for polymeric nanocomposites. However, their high hydrophilicity limits their use with hydrophobic polymer for composite materials. In this study, freeze-dried CNCs were modified by transesterification with canola oil fatty acid methyl ester to reduce the hydrophilicity. The transesterified CNCs (CNCFE) were compounded with PLA into nanocomposites. CNCFE with long-chain hydrocarbons plays a role as plasticizer. Increasing CNCFE loadings resulted in clear plasticizing effects. Lower T g and T m were achieved for CNCFE-based nanocomposites. Plasticizing nanocomposite melt with CNCFE can mitigate the degradation of CNCs during thermal processing. The elongation at break of nanocomposites containing 5% CNCFE was increased. Dynamic rheological study showed the highest elastic and viscous moduli (G' and G") and complex viscosity (G*) of nanocomposites with addition of 2% CNCFE. By tailoring the loadings of the transesterified CNCs, tunable structure and properties of nanocomposites can be obtained.
机译:用于聚合物纳米复合材料的可再生和可持续填料纤维素纳米晶体(CNC)。然而,它们的高亲水性限制了它们与复合材料的疏水聚合物的用途。在该研究中,通过用油菜油脂肪酸甲酯酯交换来改变冷冻干燥的CNC,以降低亲水性。将酯化的CNC(CNCFE)与PLA混合到纳米复合材料中。 CNCFE具有长链碳氢化合物起到增塑剂的作用。增加CNCFE载荷导致清晰的增塑作用。基于CNCFE的纳米复合材料实现了降低的T G和T m。用CNCFE塑化纳米复合材料熔体可以减轻热处理期间CNC的降解。含有5%CNCFE的纳米复合材料的断裂处的伸长率升高。动态流变研究显示,添加2%CNCFE的纳米复合材料的最高弹性和粘性模量(G'和G“)和复合粘度(G *)。通过剪裁酯化的CNC的载荷,可调谐结构和纳米复合材料的性能获得。

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