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On the use of TEM in the characterization of nanocomposites

机译:关于TEM在纳米复合材料表征中的应用

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摘要

Both an organically modified commercial clay of montmorillonite type (MMT) and its nanocomposites, based either on polyamide 6 (PA6) or an epoxy resin, as matrix polymer, have been characterized by transmission electron microscopy (TEM). Sample micrographs, taken at increasing exposure times (t_e), have shown the gradual disappearance of clay layers, because of an amorphisation of the MMT crystalline structures caused by prolonged sample exposure to electron beam. Indeed, the above phenomenon, which is mostly evident in the case of intercalated nanocomposites, makes the detection of the layered silicate dispersion in the polymer matrix rather difficult and compels to perform TEM measurements using very short exposure times. Moreover, the microscopy accelerating voltage has turned out to affect sample stability; namely, when decreasing the above parameter, the disappearance of clay structure occurs at lower exposure times.
机译:蒙脱土型(MMT)的有机改性商品粘土及其基于聚酰胺6(PA6)或环氧树脂的纳米复合材料作为基质聚合物,均已通过透射电子显微镜(TEM)进行了表征。在增加的曝光时间(t_e)下拍摄的样品显微照片显示,由于样品长时间暴露于电子束导致MMT晶体结构的非晶化,粘土层逐渐消失。确实,上述现象在嵌入纳米复合材料的情况下最明显,这使得检测聚合物基质中层状硅酸盐分散体变得相当困难,并且迫使使用非常短的曝光时间进行TEM测量。而且,显微镜加速电压已经证明会影响样品的稳定性。即,当减小上述参数时,粘土结构的消失在较短的曝光时间下发生。

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