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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >The imaging mechanism, imaging depth, and parameters influencing the visibility of carbon nanotubes in a polymer matrix using an SEM
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The imaging mechanism, imaging depth, and parameters influencing the visibility of carbon nanotubes in a polymer matrix using an SEM

机译:使用SEM的成像机理,成像深度和影响聚合物基体中碳纳米管可见度的参数

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Visualization of embedded carbon nanotubes (CNTs) in polymer using a scanning electron microscope (SEM) has been established as a convenient technique to evaluate CNT disper sion. This technique is known as voltage contrast imaging and is different from material contrast and topographic contrast imaging. By investigating CNT/epoxy composites the voltage contrast imaging theory is further understood. Trapping of electrons at the CNT/ epoxy interface induces a local potential difference which enhances the image contrast. By coating the composite with a polymer film of different thicknesses the imaging depth (i.e. from how deep the CNTs can be seen) is determined to be up to 250 nm, and is a function of the accelerating voltage of the SEM. Visibility of CNTs is found to be sensitive to the CNT dispersion and concentration, as well as to the accelerating voltage.
机译:已经建立了使用扫描电子显微镜(SEM)可视化聚合物中嵌入的碳纳米管(CNT)的方法,作为评估CNT分散性的便捷技术。该技术称为电压对比成像,与材料对比和形貌对比成像不同。通过研究CNT /环氧复合材料,可以进一步理解电压对比成像理论。电子在CNT /环氧界面处的俘获会引起局部电位差,从而增强图像对比度。通过用不同厚度的聚合物膜涂覆复合物,成像深度(即从可以看到CNT的深度)被确定为高达250nm,并且是SEM加速电压的函数。发现CNT的可见性对CNT的分散度和浓度以及加速电压敏感。

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