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Insights into Nano-Scale Physical and Mechanical Properties of Epoxy/Boehmite Nanocomposite Using Different AFM Modes

机译:使用不同的AFM模式洞察环氧树脂/勃姆石纳米复合材料的纳米级物理和机械性能

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摘要

Understanding the interaction between nanoparticles and the matrix and the properties of interphase is crucial to predict the macroscopic properties of a nanocomposite system. Here, we investigate the interaction between boehmite nanoparticles (BNPs) and epoxy using different atomic force microscopy (AFM) approaches. We demonstrate benefits of using multifrequency intermodulation AFM (ImAFM) to obtain information about conservative, dissipative and van der Waals tip-surface forces and probing local properties of nanoparticles, matrix and the interphase. We utilize scanning kelvin probe microscopy (SKPM) to probe surface potential as a tool to visualize material contrast with a physical parameter, which is independent from the mechanics of the surface. Combining the information from ImAFM stiffness and SKPM surface potential results in a precise characterization of interfacial region, demonstrating that the interphase is softer than epoxy and boehmite nanoparticles. Further, we investigated the effect of boehmite nanoparticles on the bulk properties of epoxy matrix. ImAFM stiffness maps revealed the significant stiffening effect of boehmite nanoparticles on anhydride-cured epoxy matrix. The energy dissipation of epoxy matrix locally measured by ImAFM shows a considerable increase compared to that of neat epoxy. These measurements suggest a substantial alteration of epoxy structure induced by the presence of boehmite.
机译:了解纳米颗粒与基质之间的相互作用以及相间性质对于预测纳米复合系统的宏观性质至关重要。在这里,我们使用不同的原子力显微镜(AFM)方法研究勃姆石纳米颗粒(BNP)和环氧树脂之间的相互作用。我们展示了使用多频互调AFM(ImAFM)来获取有关保守,耗散和范德华尖端表面力的信息以及探查纳米粒子,基质和中间相的局部特性的好处。我们利用扫描开尔文探针显微镜(SKPM)来探测表面电势,以此工具可视化具有物理参数的材料对比度,而该物理参数与表面力学无关。结合来自ImAFM刚度和SKPM表面电势的信息,可以精确表征界面区域,这表明界面比环氧树脂和勃姆石纳米粒子更柔软。此外,我们研究了勃姆石纳米颗粒对环氧基质本体性能的影响。 ImAFM刚度图揭示了勃姆石纳米粒子对酸酐固化的环氧基质的显着增强作用。与纯环氧树脂相比,通过ImAFM局部测量的环氧基质的能量消耗显示出可观的增加。这些测量表明由勃姆石的存在引起的环氧结构的显着改变。

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