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首页> 外文期刊>Micron: The international research and review journal for microscopy >Micro-structural characterization of precipitation-synthesized fluorapatite nano-material by transmission electron microscopy using different sample preparation techniques
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Micro-structural characterization of precipitation-synthesized fluorapatite nano-material by transmission electron microscopy using different sample preparation techniques

机译:沉淀合成的氟磷灰石纳米材料的显微结构表征,采用透射电子显微镜,采用不同的样品制备技术

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摘要

Fluorapatite is a naturally occurring mineral of the apatite group and it is well known for its high physical and chemical stability,. There is a recent interest in this ceramic to be used as a radioactive waste form material due to its intriguing chemical and physical properties. In this study, the nano-sized fluorapatite particles were synthesized using a precipitation method and the material was characterized using X-ray diffraction (XRD) and transmission electron microscopy (TEM). Two well-known methods, called solution-drop and the microtome cutting, were used to prepare the sample for TEM analysis. It was found that the microtome cutting technique is advantageous for examining the particle shape and cross-sectional morphology as well as for obtaining ultra-thin samples. However, this method introduces artifacts and strong background contrast for high-resolution transmission electron microscopy (HRTEM) observation. On the other hand, phase image simulations showed that the solution-drop method is reliable and stable for HRTEM analysis. Therefore, in order to comprehensively analyze the microstructure and morphology of the nano-material, it is necessary to combine both solution-drop and microtome cutting techniques for TEM sample preparation.
机译:氟磷灰石是磷灰石族的天然矿物,众所周知,它具有很高的物理和化学稳定性。由于这种陶瓷具有令人感兴趣的化学和物理特性,因此最近被用作放射性废物形式的材料。在这项研究中,使用沉淀法合成了纳米氟磷灰石颗粒,并使用X射线衍射(XRD)和透射电子显微镜(TEM)对材料进行了表征。两种众所周知的方法,称为溶液滴落法和切片机切割法,被用于制备用于TEM分析的样品。发现切片机切割技术对于检查颗粒形状和横截面形态以及获得超薄样品是有利的。但是,此方法引入了伪影和强大的背景对比度,可用于高分辨率透射电子显微镜(HRTEM)观察。另一方面,相位图像仿真表明,溶液滴落法对于HRTEM分析是可靠且稳定的。因此,为了全面分析纳米材料的微观结构和形貌,必须结合溶液滴和切片机切割技术来制备TEM样品。

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