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Evaluation of Nanocomposite Made of Polylactic Acid and Nanocellulose from Carrot Pomace Modified with Silver Nanoparticles

机译:银纳米粒子修饰的胡萝卜渣中聚乳酸和纳米纤维素制成的纳米复合材料的评价

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摘要

In this research, it was proposed to use carrot cellulose nanofibrils (CCNF) isolated from carrot pomace modified with silver nanoparticles (AgNPs) as a filler of polylactic acid (PLA) composites matrix. The new procedure was based on two steps: first, the preparation of nanocellulose modified with metal nanoparticles, and then the combination with PLA. Two concentrations—0.25 mM and 2 mM—of AgNO were used to modify CCNF. Then, PLA was mixed with the filler (CCNF/AgNPs) in two proportions 99:1 and 96:4. The influence of CCNF/AgNPs on mechanical, hydrophilic, thermal, and antibacterial properties of obtained nanocomposites was evaluated. The greatest improvement of mechanical properties was observed for composite containing CCNF with 2 mM of AgNPs, which obtained the lowest Young modulus and highest strain at break. The degradation temperature was lower for PLA with CCNF/AgNPs, but crystallization temperature wasn’t influenced. The addition of CCNF/AgNPs also increased hydrophilicity. The transmission rates of oxygen, nitrogen, and carbon dioxide also increased after the addition of CCNF/AgNPs to PLA. The antibacterial function against and was obtained after the addition of AgNPs but only at the contact surface with the material made, suggesting the lack of migration of nanoparticles from the composite.
机译:在这项研究中,建议使用从银纳米颗粒(AgNPs)修饰的胡萝卜果渣中分离的胡萝卜纤维素纳米原纤维(CCNF)作为聚乳酸(PLA)复合材料基质的填充剂。新程序基于两个步骤:首先,制备用金属纳米粒子改性的纳米纤维素,然后与PLA结合。使用两种浓度的AgNO(0.25 mM和2 mM)修饰CCNF。然后,将PLA与填充剂(CCNF / AgNPs)以99:1和96:4的两个比例混合。评估了CCNF / AgNPs对获得的纳米复合材料的机械,亲水,热和抗菌性能的影响。对于包含CCNF和2 mM AgNPs的复合材料,观察到机械性能的最大改善,该复合材料具有最低的杨氏模量和最高的断裂应变。具有CCNF / AgNPs的PLA的降解温度较低,但结晶温度不受影响。添加CCNF / AgNPs也可以增加亲水性。在PLA中添加CCNF / AgNP后,氧气,氮气和二氧化碳的传输速率也增加了。在添加AgNPs之后,该抗菌剂获得了抗和抗菌功能,但仅在与制成材料的接触表面上获得了抗菌功能,这表明纳米颗粒缺乏从复合物中迁移的能力。

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