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首页> 外文期刊>Composites Science and Technology >Simultaneous enhancement of toughness, strength and superhydrophilicity of solvent-free microcrystalline cellulose fluids/poly(lactic acid) fibers fabricated via electrospinning approach
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Simultaneous enhancement of toughness, strength and superhydrophilicity of solvent-free microcrystalline cellulose fluids/poly(lactic acid) fibers fabricated via electrospinning approach

机译:同时增强通过电纺丝方法制备的无溶剂微晶纤维素流体/聚乳酸纤维的韧性,强度和超亲水性

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In this paper, solvent-free microcrystalline cellulose fluids (MCCFs) with liquid-like behavior were synthesized for the first time through surface grafted polyethylene glycol-substituted tertiary amines into microcrystalline cellulose (MCC) followed by fabricating MCCFs based polylactic acid (PLA) fabric (PLA/MCCFs) via electrospinning method. Owing to low viscosity of MCCFs at room temperature, the addition of MCCFs not only hardly affected the viscosity of electrospinning solution, but also improved the thermal stability of as-prepared PLA fibers. Interestingly, it was amazingly found that surface micropore morphology of PLA fabric diminished, and even disappeared with the content of MCCFs increasing during solvent evaporation process, which may be ascribed to the rapid migration of MCCFs into micropore before solidification. More importantly, the tensile strengths of PLA/MCCFs fabric with 10 wt% content of MCCFs achieved as high as 13.68 MPa, which was 3.18 times as much as that of 4.3 MPa for pure PLA fabric meanwhile the elongation at break of PLA/MCCFs fabrics increased from 13.19% for pure PLA fabric to 48.84% for PLA/MCCFs fabric with 15 wt% content of MCCFs. Beyond above mentioned, the water contact angle for pure PLA fabric was 127 degrees (hydrophobicity), whereas other samples were close to 0 with addition of MCCFs, displaying the super-hydrophilicity. It was possibly inferred that MCCFs quickly migrated towards to the surface of fibers rather than staying inside of the fibers during the electrospinning process, leading to positive effect on the hydrophilicity of the PLA fibers. Finally, it is anticipated that this strategy for fabricating PLA fiber using this novel MCCFs as filler will pave the way for developing high performance PLA composites with desirable properties in the future.
机译:本文通过将聚乙二醇取代的叔胺表面接枝到微晶纤维素(MCC)中,然后制备基于MCCFs的聚乳酸(PLA)织物,首次合成了具有类液体行为的无溶剂微晶纤维素液(MCCF)。 (PLA / MCCF)通过静电纺丝方法。由于MCCF在室温下的粘度较低,因此添加MCCF不仅几乎不会影响静电纺丝溶液的粘度,而且还改善了所制备的PLA纤维的热稳定性。有趣的是,令人惊奇地发现,PLA织物的表面微孔形态在溶剂蒸发过程中随着MCCF含量的增加而减小,甚至消失,这可能归因于MCCF在固化前迅速迁移到微孔中。更重要的是,MCCF含量为10 wt%的PLA / MCCFs织物的拉伸强度高达13.68 MPa,是纯PLA织物的4.3 MPa的3.18倍,而PLA / MCCFs织物的断裂伸长率为从纯PLA织物的13.19%增加到MCCF含量为15 wt%的PLA / MCCFs织物的48.84%。除此之外,纯PLA织物的水接触角为127度(疏水性),而添加MCCF的其他样品接近于0,显示出超亲水性。可以推断,在电纺过程中,MCCFs迅速向纤维表面迁移,而不是停留在纤维内部,从而对PLA纤维的亲水性产生积极影响。最后,可以预料的是,使用这种新型的MCCF作为填料来制造PLA纤维的策略将为将来开发具有所需性能的高性能PLA复合材料铺平道路。

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