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Synergistic Physical Properties of Multiphase Nanocomposites with Carbon Nanotubes and Inorganic Particles

机译:碳纳米管和无机颗粒多相纳米复合材料的协同物理特性

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Multiphase epoxy-nanocomposites based on multi-wall carbon nanotubes (MWCNT) and inorganic nanoparticles (TiO_2) were produced. The rheological, electrical and thermo-mechanical properties were investigated in order to reveal informations about the interparticle interactions between the different types of nanoparticles. TEM-investigations reveal altered microstructures for the multiphase nanocomposites (MWCNT plus TiO_2). TiO_2 causes changes in the state of dispersion of MWCNT which can lead to an increase of the rheological parameters (e.g. G'). Due to changes in the formation of the percolated MWCNT network during curing, the electrical conductivity is decreased if the concentration of the non-conductive fillers exceeds a critical value. Additional synergistic effects could be found for the glass transition temperature. The presence of nanoparticles leads to a chemical inactivation of reactive groups of the matrix. Thus, the generated interphase between matrix and nanoparticles exhibits a lower curing degree which results in lower thermo-mechanical properties. For the multiphase systems the glass transition temperature is decreased less, due to an inactivation of the surface of the different types of nanoparticles by a self assembly which leads to a higher curing degree of the interphase.
机译:制备了基于多壁碳纳米管(MWCNT)和无机纳米颗粒(TiO_2)的多相环氧-纳米复合材料。为了揭示有关不同类型纳米粒子之间的粒子间相互作用的信息,对流变,电和热机械性能进行了研究。 TEM研究表明,多相纳米复合材料(MWCNT加TiO_2)的微观结构发生了变化。 TiO_2引起MWCNT分散状态的变化,这可能导致流变参数(例如G')的增加。由于固化过程中渗透的MWCNT网络形成的变化,如果非导电填料的浓度超过临界值,则电导率会降低。对于玻璃化转变温度,可以发现其他协同作用。纳米颗粒的存在导致基质的反应性基团化学失活。因此,在基质和纳米颗粒之间产生的中间相表现出较低的固化度,这导致较低的热机械性能。对于多相体系,由于自组装使不同类型的纳米颗粒的表面失活,玻璃化转变温度降低得较少,这导致较高的相间固化度。

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