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Improvement of Mechanical Properties and Self-Healing Efficiency by Ex-Situ Incorporation of TiO2 Nanoparticles to a Waterborne Poly(Urethane-Urea)

机译:将TiO2纳米颗粒的替氏掺入到水性聚(氨基甲酸酯 - 尿素)的情况下改善机械性能和自我愈合效率

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摘要

This research work was focused on the incorporation of TiO2 nanoparticles into synthesized solvent-free waterborne poly(urethane-urea) (WPUU) based on hydrophilic poly(ethylene oxide) (PU0) in order to improve both the mechanical properties and self-healing effectiveness of a polymer matrix. The incorporation of TiO2 nanoparticles resulted in a successful enhancement of the mechanical properties of nanocomposite films when compared to PU0. Simultaneously, the obtained nanocomposite films did not only maintain the self-healing ability of the PU0 film, measured by means of mechanical properties after successive cutting/recovery cycles, but they also showed a higher self-healing efficiency than the PU0 film. Moreover, the well-dispersed TiO2 nanoparticles, visualized by atomic force microscopy (AFM), kept their conductive properties when embedded in the PU0 matrix, as was confirmed by electrostatic force microscopy (EFM). This research work described a simple and industrially appealing way to control the dispersion of commercially available TiO2 nanoparticles in waterborne poly(urethane-urea) for the designing of inorganic/organic hybrid nanocomposites with enhanced mechanical properties and self-healing efficiency, in which TiO2 nanoparticles preserved their conductive properties within the polymer matrix.
机译:本研究的研究重点是基于亲水性聚(环氧乙烷)(PU0)将TiO2纳米颗粒掺入合成的无溶剂水性水(氨基甲酸酯 - 脲)(WPUU)中,以改善机械性能和自我愈合效果聚合物基质。与PU0相比,TiO2纳米颗粒的掺入导致纳米复合膜的机械性能的成功提高。同时,所得纳米复合膜不仅保持PU0膜的自愈合能力,通过连续切削/回收循环后通过机械性能测量,但它们还显示出比PU0膜更高的自愈效率。此外,通过原子力显微镜(AFM)可视化的分散良好的TiO2纳米颗粒,当嵌入PU0基质中时,它们使其导电性能如静电力显微镜(EFM)所确认。该研究工作描述了一种简单且工业上有吸引力的方法,可以控制在水性/有机杂化纳米复合材料中使用具有增强的机械性能和自我愈合效率的无机/有机杂交纳米复合材料中的商业上可用的TiO2纳米颗粒的分散方法,其中TiO2纳米颗粒保留了聚合物基质内的导电性质。

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