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Effect of cellulose nanocrystal polymorphs on mechanical, barrier and thermal properties of poly(lactic acid) based bionanocomposites

机译:纤维素纳米晶体多晶型物对基于聚乳酸的生物纳米复合材料的机械性能,阻隔性能和热性能的影响

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Cellulose nanocrystals (CNCs) using different polymorphs of cellulose were fabricated from raw bamboo pulp through alkali treatment followed by acid hydrolysis. The effect of CNC polymorphs, namely CNC I, CNC II and CNC: I -> II (CNC II from cellulose I), on morphology, crystal structure, degree of hydrogen bonding and thermal stability were studied. These polymorphs were dispersed in polylactic acid (PLA) films using a casting evaporation approach and their effect on the structural, thermal, mechanical and barrier properties of the PLA were investigated. The CNC polymorphs differ significantly in their reinforcement capability and ability to form percolated networks. Incorporation of CNC II and CNC: I -> II significantly improved the Young's modulus of composites (by similar to 72%). However, their elongation at break significantly decreased compared to CNC I, due to high hydroxyl functionality, which forms an entangled hydrogen bonded network within the polymer matrix, leading to improvement in mechanical as well as barrier properties. The theoretically calculated moduli of composites using Halpin-Kardos, Cox-Krenchel and Ouali models showed good agreement for CNC I, CNC II and CNC: I -> II, albeit at higher aspect ratio. All three CNCs showed the ability to form percolated networks, the occurrence and stability of which varied with the type of polymorph. Therefore, the current study provides an insight towards selection of appropriate polymorphs for fabrication of CNC reinforced high performance poly (lactic acid) based bionanocomposites.
机译:由不同的纤维素多晶型物制成的纤维素纳米晶体(CNC),是由未经加工的竹浆经碱处理,然后进行酸水解制成的。研究了CNC I,CNC II和CNC I-> II(纤维素I的CNC II)等CNC多晶型对形貌,晶体结构,氢键程度和热稳定性的影响。使用浇铸蒸发法将这些多晶型物分散在聚乳酸(PLA)膜中,并研究了它们对PLA的结构,热,机械和阻隔性能的影响。 CNC多晶型物的增强能力和形成渗滤网络的能力差异很大。 CNC II和CNC的合并:I-> II显着提高了复合材料的杨氏模量(接近72%)。然而,由于高的羟基官能度,它们的断裂伸长率与CNC I相比显着降低,这在聚合物基体内形成了缠结的氢键网络,从而改善了机械性能和阻隔性能。使用Halpin-Kardos,Cox-Krenchel和Ouali模型从理论上计算出的复合材料的模量显示出对于CNC I,CNC II和CNC的良好一致性:I-> II,尽管纵横比更高。这三个CNC都显示出形成渗滤网络的能力,其发生和稳定性随多晶型物的类型而变化。因此,当前的研究为选择合适的多晶型物提供了见识,这些多晶型物可用于制造基于CNC增强的高性能聚乳酸复合材料。

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