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In Situ Self-Assembled Nanocomposites from Bacterial Cellulose Reinforced with Eletrospun Poly(lactic acid)/Lipids Nanofibers

机译:Eletrospun聚乳酸/脂质纳米纤维增强的细菌纤维素原位自组装纳米复合材料

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摘要

The goal of this study is to explore a new strategy to improve the mechanical and hydrophobic properties of bacterial cellulose (BC) mats. The present work is the first to report the preparation of in situ self-assembled BC nanocomposites using electrospun hydrophobic poly(lactic acid) (PLA) or PLA/lipids (PLA/Lip) nanofiber mats as foundation for BC nanofiber growth. Adding electrospun PLA mats to the BC culture media led to a two-fold increase in toughness with a 52% increase in elongation of the nanocomposites with regard to BC. The incorporation of electrospun PLA and PLA/Lip nanofiber mats lowered the moisture regain and water vapor transmission of BC nanocomposites relative to pure BC mats. The interfacial bonding between the individual components of a nanocomposite is a key factor for the improvement of composite strength, stiffness, and barrier properties; thus additional strategies to improve interaction between hydrophilic BC and hydrophobic PLA fibers need to be explored.
机译:这项研究的目的是探索一种新的策略,以改善细菌纤维素(BC)垫的机械和疏水性能。本工作是第一个报告使用静电纺丝疏水聚乳酸(PLA)或PLA /脂质(PLA / Lip)纳米纤维垫作为BC纳米纤维生长基础的原位自组装BC纳米复合材料的制备方法。将电纺PLA垫添加到BC培养基中,使韧性提高了两倍,相对于BC,纳米复合材料的伸长率提高了52%。相对于纯BC垫,电纺PLA和PLA / Lip纳米纤维垫的结合降低了BC纳米复合材料的回潮率和水蒸气透过率。纳米复合材料各组分之间的界面键合是提高复合材料强度,刚度和阻隔性能的关键因素。因此,需要探索改善亲水性BC和疏水性PLA纤维之间相互作用的其他策略。

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