首页> 外文期刊>Journal of Laser Micro/Nanoengineering >Nanocomposite Fibre Fabrication via in situ Monomer Grafting and Bonding on Laser-generated Nanoparticles
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Nanocomposite Fibre Fabrication via in situ Monomer Grafting and Bonding on Laser-generated Nanoparticles

机译:通过原位单体接枝和激光生成纳米粒子上的键合纳米复合纤维的制备。

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Bioactive nanocomposites may become an important material if both the carrier matrix and the nanoparticle are biocompatible, like is known for zinc oxide and lactones. The fabrication of such nanocomposite made of polycaprolactone nanofibres with embedded nanoparticles is studied during laser ablation in liquid monomer and polymer solution. The in situ conjugation of zinc oxide nano-particles with ε-caprolactone followed by zinc-initiated polymerization was studied. Indication for covalent bonding between the zinc oxide nanoparticles and the carboxylic units of the oligomers is observed. In addition to the study of the intended nanohybrid formation, possible formation of unin-tended byproducts was investigated. Laser-induced pyrolysis of solvent was studied for nanosecond, picosecond, and femtosecond laser pulse durations at the same energy input, where all pulse dura-tions caused unintended solvent modification and picosecond pulses were most efficient for nano-particle production. Heading towards fabrication of macroscopic bioactive fibre pads, the laser-generated zinc oxide polymer nanocomposite have been successfully spun into nanofibres using electrospinning. Polymer-embedding is demonstrated at the example of macroscopic nanocomposite fibre pads with various bio-relevant nanoparticles fabricated by laser ablation of magnesium, iron, and tantalum in polycaprolactone solution.
机译:如果载体基质和纳米颗粒都是生物相容的,则生物活性纳米复合材料可能会成为重要的材料,例如氧化锌和内酯。在液体单体和聚合物溶液中进行激光烧蚀过程中,研究了由聚己内酯纳米纤维与纳米粒子嵌入而成的纳米复合材料的制备。研究了氧化锌纳米粒子与ε-己内酯的原位共轭,然后进行锌引发的聚合反应。观察到氧化锌纳米颗粒和低聚物的羧基单元之间的共价键指示。除了研究预期的纳米杂化物的形成以外,还研究了意外形成的副产物的可能形成。在相同的能量输入下,研究了激光诱导的溶剂热解过程的纳秒,皮秒和飞秒激光脉冲持续时间,其中所有脉冲持续时间导致意外的溶剂改性,皮秒脉冲对于纳米颗粒的生产最有效。朝着制造宏观生物活性纤维垫的方向发展,使用静电纺丝技术成功地将激光生成的氧化锌聚合物纳米复合材料纺成纳米纤维。在宏观纳米复合纤维垫的示例中展示了聚合物包埋,该垫具有通过聚己内酯溶液中的镁,铁和钽的激光烧蚀制备的各种生物相关的纳米颗粒。

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