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首页> 外文期刊>Crystal growth & design >Crystal growth, crystal morphology and surface micromorphology of type IIIKGd(PO3)(4) and KNd(PO3)(4)
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Crystal growth, crystal morphology and surface micromorphology of type IIIKGd(PO3)(4) and KNd(PO3)(4)

机译:IIIKGd(PO3)(4)和KNd(PO3)(4)型的晶体生长,晶体形态和表面微观形态

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摘要

Type III KGd(PO3)(4) (KGP) and KNd(PO3)(4) (KNP) inclusion-free single crystals can be grown using the top seeded solution growth-slow cooling method without pulling even though the viscosity of the solution is high (around 16 Pa.s(-1) near the crystallization temperature). Poisoning by impurities in the crystals was minimized by using the corresponding self-fluxes as solvent. We determined their main growth process by analyzing the typical micromorphologies that appeared on the surface of the as-grown faces. The crystal morphologies of KGP and KNP were identified using X-ray diffraction analysis. The external habit of the crystals appeared to be more symmetrical than it structurally was because, although KGP and KNP are monoclinic with space group P2(1), they have an almost cubic cell because their cell parameters are similar and the beta angle is very close to 90 degrees. We checked the chemical stability of KGP and KNP in basic and acid media. The distribution and geometry of structural defects were studied by analyzing the etch pits that appeared on the {100}, the {010}, and the {001} forms. The crystals cleaved parallel to {010} and {001}, so the surface micromorphology of both forms was studied. We determined the orientation, the density, and the height of the cleaved planes. We also characterized the local plastic deformation of KGP and KNP by measuring the microhardness on the {100}, {010}, and {001} forms using an indentation method.
机译:可以使用顶部晶种溶液生长-缓慢冷却方法生长III型KGd(PO3)(4)(KGP)和KNd(PO3)(4)(KNP)不含夹杂物的单晶,即使溶液的粘度也不会拉高较高(在结晶温度附近约为16 Pa.s(-1))。通过使用相应的自助熔剂作为溶剂,可最大程度地减少晶体中杂质引起的中毒。我们通过分析生长的面部表面上出现的典型微观形态来确定它们的主要生长过程。使用X射线衍射分析鉴定了KGP和KNP的晶体形态。晶体的外部习性似乎比结构上的对称,这是因为,尽管KGP和KNP是单斜晶且具有空间群P2(1),但它们具有几乎立方的晶胞,因为它们的晶胞参数相似且β角非常接近到90度我们检查了KGP和KNP在碱性和酸性介质中的化学稳定性。通过分析在{100},{010}和{001}形式上出现的腐蚀坑,研究了结构缺陷的分布和几何形状。晶体平行于{010}和{001}分裂,因此研究了两种形式的表面微观形态。我们确定了劈开平面的方向,密度和高度。我们还通过压痕法测量了{100},{010}和{001}形式的显微硬度,从而表征了KGP和KNP的局部塑性变形。

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